acorus calamus leaf oil | |||
# | % | Leftshift | Components |
---|---|---|---|
30 | 1.61 | acolamone | |
36 | 3.62 | iso | acolamone |
28 | 4.09 | acoragermacrone | |
39 | 6.57 | (1,10)- | aristolen-2-one |
34 | 0.21 | beta- | bisabolene |
10 | 0.11 | borneol | |
14 | 0.25 | bornyl acetate | |
17 | 0.05 | beta- | bourbonene |
29 | 4.07 | delta- | cadinene |
31 | 0.30 | alpha- | calacorene |
42 | 0.58 | iso | calamendiol |
41 | 0.10 | calamenene | |
40 | 0.72 | calamusenone | |
9 | 0.08 | camphor | |
20 | 4.13 | beta- | caryophyllene |
16 | 0.04 | alpha- | copaene |
23 | 0.32 | beta- | cubebene |
35 | 1.81 | isoepi- | cubenol |
4 | 0.04 | para- | cymene |
43 | 0.40 | dibutyl phthalate | |
18 | 0.79 | beta- | elemene |
15 | 0.21 | delta- | elemene |
32 | 0.73 | elemol | |
27 | 0.80 | beta- | guaiene |
24 | 0.96 | beta- | gurjurene |
21 | 0.07 | alpha- | humulene |
5 | 2.61 | limonene | |
8 | 3.10 | linalool | |
13 | 0.11 | linalyl acetate | |
47 | 0.02 | linoleic acid | |
3 | 0.07 | para- | mentha-2,4(8)-diene |
48 | 0.04 | methyl 9,12,15-octadecatrienoate | |
19 | 0.86 | methyl eugenol | |
26 | 3.37 | (E)- | methyl isoeugenol |
22 | 36.40 | (Z)- | methyl isoeugenol |
37 | 2.60 | alpha- | muurolol |
38 | 3.17 | epi-alpha- | muurolol |
2 | 0.09 | myrcene | |
45 | 0.04 | 1- | octadecene |
44 | 0.06 | palmitic acid | |
46 | 0.11 | phytol | |
1 | 0.21 | sabinene | |
25 | 3.19 | shyobunone | |
33 | 0.64 | iso | shyobunone |
11 | 0.21 | terpinen-4-ol | |
7 | 0.04 | alpha- | terpinene |
6 | 0.05 | gamma- | terpinene |
12 | 0.31 | alpha- | terpineol |
49 | 0.10 | tricosane | |
M. X. Li and Z-B. Jiang, The volatile constituents of the essential oil and their distribution in Acorus calamus L. Zhongcaoyo, 24, 459-461 (1993). P&F 22, No. 2, 59, (1997) | |||
aloysia triphylla oil turkey | |||
# | % | Leftshift | Components |
41 | 0.54 | aromadendrene | |
35 | 0.10 | epi- | bicyclosesquiphellandrene |
48 | 0.15 | beta- | bisabolene |
31 | 0.56 | beta- | bourbonene |
52 | 0.24 | delta- | cadinene |
53 | 0.26 | gamma- | cadinene |
66 | 0.97 | T- | cadinol |
29 | 0.05 | alpha- | campholenic aldehyde |
57 | 0.36 | trans- | carveol |
59 | 0.12 | cis- | carveol |
50 | 0.50 | carvone | |
37 | 3.49 | beta- | caryophyllene |
61 | 4.87 | caryophyllene oxide | |
34 | 0.43 | alpha- | cedrene |
11 | 10.07 | 1,8- | cineole |
26 | 0.17 | citronellal | |
28 | 0.58 | alpha- | copaene |
54 | 4.93 | ar- | curcumene |
16 | 0.11 | para- | cymene |
42 | 0.11 | (E)-beta- | farnesene |
49 | 11.93 | geranial | |
58 | 0.04 | geraniol | |
56 | 0.21 | geranyl propionate | |
46 | 1.50 | germacrene D | |
12 | 0.17 | (E)-2- | hexenal |
18 | 0.04 | (Z)-3- | hexen-1-ol |
43 | 0.51 | alpha- | humulene |
10 | 18.59 | limonene | |
24 | 0.22 | (E)-1,2- | limonene epoxide |
23 | 0.47 | (Z)-1,2- | limonene epoxide + 1-octen-3-ol |
32 | 0.38 | linalool | |
22 | 0.04 | (Z)- | linalool oxide furanoid |
40 | 0.41 | (Z)-para- | mentha-2,8-dien-1-ol |
1 | 0.35 | methyl 2-methyl butyrate | |
62 | 0.08 | methyl eugenol | |
4 | 0.10 | 2- | methyl-3-buten-2-ol |
19 | 0.01 | 6- | methyl-3-heptanol |
36 | 0.08 | 6- | methyl-3,5-heptadien-2-one |
17 | 1.40 | 6- | methyl-5-hepten-2-one |
67 | 0.19 | T- | muurolol |
7 | 0.40 | myrcene | |
44 | 5.99 | neral | |
55 | 0.12 | nerol | |
63 | 0.73 | nerolidol | |
51 | 0.72 | neryl acetate | |
15 | 1.41 | (E)-beta- | ocimene |
13 | 0.11 | (Z)-beta- | ocimene |
20 | 0.06 | perillene | |
30 | 0.40 | (E,E)- | photocitral |
27 | 0.22 | (Z,Z)- | photocitral |
21 | 0.14 | photocitral B | |
2 | 1.42 | alpha- | pinene |
5 | 0.19 | beta- | pinene |
60 | 0.07 | piperitenone | |
39 | 0.31 | rosefuran epoxide | |
6 | 2.83 | sabinene | |
25 | 0.80 | (E)- | sabinene hydrate |
33 | 0.20 | (Z)- | sabinene hydrate |
65 | 4.30 | spathulenol | |
38 | 0.31 | terpinen-4-ol | |
8 | 0.08 | alpha- | terpinene |
14 | 0.08 | gamma- | terpinene |
45 | 2.00 | alpha- | terpineol |
3 | 0.20 | alpha- | thujene |
9 | 0.05 | 1,3,3- | trimethyl bicyclo(2,2,2)oct-5-ene |
64 | 0.08 | viridiflorol | |
47 | 0.27 | zingiberene | |
T. Ozek, N. Kirimer, K. H. C. Baser and G. Tiimen, Composition of the essential oil of Aloysia triphylla (l’Herit,) Britton grown in Turkey. J. Essent. Oil Res., 8,581-563 (1896). P&F 23, No. 5, 55, (1998) | |||
alpinia galanga oil | |||
# | % | Leftshift | Components |
24 | 10.70 | alpha- | bergamotene |
30 | 16.20 | beta- | bisabolene |
12 | trace | borneol | |
17 | 2.50 | bornyl acetate | |
2 | 0.50 | camphene | |
23 | 0.90 | caryophyllene | |
33 | 2.50 | caryophyllene oxide | |
16 | 0.20 | chavicol | |
19 | 1.00 | chavicyl acetate | |
7 | 5.50 | 1,8- | cineole |
20 | 1.60 | citronellyl acetate | |
22 | 0.70 | copaene | |
28 | 1.90 | ar- | curcumene |
14 | trace | para- | cymen-8-ol |
6 | 0.80 | para- | cymene |
29 | 1.50 | eugenyl acetate | |
26 | 18.20 | (E)-beta- | farnesene |
21 | 5.10 | geranyl acetate | |
25 | 0.60 | alpha- | humulene |
8 | 1.60 | limonene | |
11 | trace | linalool | |
5 | 0.70 | myrcene | |
31 | 1.90 | pentadecane | |
32 | 1.60 | beta-sesqui | phellandrene |
1 | 10.20 | alpha- | pinene |
4 | 1.60 | beta- | pinene |
3 | trace | sabinene | |
27 | 0.80 | santalene | |
13 | 0.30 | terpinen-4-ol | |
9 | trace | alpha- | terpinene |
15 | 0.20 | alpha- | terpineol |
10 | trace | terpinolene | |
18 | trace | tridecane | |
H. L. De Pooter, M. Nor Omar, B. A. Coolsaet and N. M. Schamp, The Essential Oil of Greater Galanga (Alpinia galanga) from Malaysia, Phytochem.,24, 93-96 (1985). P&F 11, No. 1, 29, (1986) | |||
alpinia officinarum root oil | |||
# | % | Leftshift | Components |
39 | 0.10 | alpha- | amorphene |
37 | 0.03 | benzyl acetone | |
27 | 1.60 | (E)-alpha- | bergamotene |
41 | 0.21 | beta- | bisabolene |
26 | 0.50 | bornyl acetate | |
44 | 0.02 | butyl benzoate | |
5 | 0.21 | iso | butyl isovalerate |
33 | 2.50 | delta- | cadinene |
34 | 2.10 | gamma- | cadinene |
36 | 0.11 | calacorene | |
35 | 0.21 | calamenene | |
4 | 4.60 | camphene | |
23 | 1.00 | camphor | |
31 | 0.40 | caryophyllene | |
46 | 0.15 | caryophyllene oxide | |
9 | 49.60 | 1,8- | cineole |
22 | 0.41 | copaene | |
13 | 0.01 | beta- | copaene |
20 | 0.04 | alpha- | cubebene |
11 | 1.60 | para- | cymene |
29 | 0.30 | beta- | elemene |
15 | 0.08 | gamma- | elemene |
16 | 0.75 | (E)-beta- | farnesene |
21 | 0.51 | alpha- | fenchyl acetate |
28 | 0.72 | alpha- | guaiene |
40 | 0.22 | delta- | guaiene |
18 | 0.11 | alpha- | humulene |
8 | 4.00 | limonene | |
24 | 0.32 | linalool | |
3 | trace | methyl isovalerate | |
32 | 0.92 | gamma- | muurolene |
7 | 0.62 | myrcene | |
38 | 0.04 | nerolidol | |
45 | 0.34 | 2- | phenethyl 2-methyl butyrate |
43 | 0.02 | 2- | phenethyl isobutyrate |
2 | 5.80 | alpha- | pinene |
6 | 6.60 | beta- | pinene |
25 | 0.10 | alpha- | santalene |
14 | 0.48 | beta- | santalene |
42 | 0.08 | alpha- | selinene |
30 | 1.90 | terpinen-4-ol | |
10 | 0.22 | gamma- | terpinene |
19 | 5.00 | alpha- | terpineol |
17 | 0.10 | delta- | terpineol |
12 | 0.09 | terpinolene | |
1 | 0.09 | alpha- | thujene |
B. M. Lawrence, J. W. Hogg and S. J. Terhune, Essential Oils and Their Constituents. Part II. The Oil of Alpinia officinarum Hance. Perfum. Essent, Oil Rec., 60, 89-96 (1969). P&F 11, No. 1, 29, (1986) | |||
amyris wood oil | |||
# | % | Leftshift | Components |
11 | 0.70 | alpha- | acoradiene |
30 | 1.00 | beta- | acoradiene |
35 | 0.70 | beta- | acorenol |
3 | 1.00 | alpha- | agarofuran |
14 | 1.60 | beta- | bisabolene |
26 | 0.20 | delta- | cadinol |
37 | <0.10 | T- | cadinol |
2 | trace | beta- | caryophyllene |
36 | <0.10 | cedranol | |
17 | 3.10 | ar- | curcumene |
24 | 0.40 | alpha-mono | cyclonerolidol |
22 | 0.30 | gamma-mono | cyclonerolidol |
21 | 0.40 | gamma-mono | cyclonerolidol |
20 | 0.80 | dihydroagarofuran | |
9 | 0.10 | beta- | elemene |
4 | 10.10 | elemol | |
5 | 10.90 | 10-epi-gamma- | eudesmol |
6 | 16.80 | beta- | eudesmol |
1 | <0.10 | furfural | |
31 | 1.00 | alpha- | gurjunene |
16 | 0.40 | beta- | himachalene |
15 | <0.10 | alpha- | humulene |
7 | 0.50 | 4alpha- | hydroxydihydroagarofuran |
38 | <0.10 | ledol | |
23 | 0.50 | (E)- | nerolidol |
10 | <0.10 | alpha- | santalene |
34 | 6.40 | selin-5-en-7-ol | |
29 | 0.10 | selina-3,7-diene | |
19 | 3.50 | selina-3,7(11)-diene | |
25 | 0.20 | selina-5-en-11-ol | |
32 | 0.50 | alpha- | selinene |
18 | 3.10 | epi-alpha- | selinene |
12 | trace | epi-gamma- | selinene |
27 | <0.10 | 1,3,7,7- | tetramethyl bicyclo(4.4.0)-3-decene |
13 | trace | valencene | |
28 | 0.10 | iso | valencene |
8 | 22.10 | valerianol | |
33 | 3.50 | zingiberene | |
B. Corbier, C. Ehret and P. Maupetit, Constituents inedits de L’essence de Santal Amyris. In: Progress in Terpene Chemistry. Edit., D. Joulain, pp. 307-316, Editns Frontiers (1986). P&F 21, No. 1, 37, (1996) | |||
angelica archangelica seed oil CO2 extract | |||
# | % | Leftshift | Components |
34 | 0.60 | bicyclogermacrene | |
35 | trace | beta- | bisabolene |
15 | 1.80 | bornyl acetate | |
36 | 0.30 | gamma- | cadinene |
3 | trace | camphene | |
6 | 1.70 | delta-3- | carene |
28 | 0.50 | beta- | caryophyllene |
29 | 2.00 | iso | caryophyllene |
26 | trace | beta- | cedrene |
46 | 0.50 | cedrol | |
16 | trace | chrysanthenyl acetate | |
17 | 2.30 | chrysanthenyl acetate | |
39 | 0.40 | alpha- | copaen-11-ol |
40 | 1.10 | alpha- | copaen-8-ol |
24 | 0.20 | alpha- | copaene |
23 | trace | alpha- | cubebene |
21 | 0.40 | cumin alcohol | |
38 | trace | cuparene | |
22 | trace | para- | cymen-8-ol |
13 | 0.80 | para- | cymene |
49 | 0.70 | (E,E)-2,4- | decadienal |
44 | 1.30 | dihydroeudesmol | |
50 | 0.60 | (E,E)-2,4- | dodecadien-1-al |
27 | trace | beta- | elemene |
25 | 1.30 | gamma- | elemene |
41 | 3.60 | elemol | |
45 | 1.50 | beta- | eudesmol |
31 | 0.30 | (Z)-beta- | farnesene |
32 | 1.70 | germacrene D | |
60 | 1.60 | heptadecanyl acetate | |
59 | 0.60 | hexadecanol | |
47 | 0.70 | hexanal | |
9 | 1.70 | limonene | |
56 | 1.10 | 12- | methyl-13-tridecanolide |
33 | trace | gamma- | muurolene |
8 | 1.20 | myrcene | |
12 | trace | (E)-beta- | ocimene |
61 | 0.90 | octadecanol | |
54 | 0.90 | pentadecanol | |
58 | 7.70 | 15- | pentadecanolide |
19 | 1.40 | phellandral | |
7 | 0.50 | alpha- | phellandrene |
10 | 16.70 | beta- | phellandrene |
2 | 11.80 | alpha- | pinene |
4 | 0.90 | beta- | pinene |
43 | 0.60 | rosifoliol | |
5 | 9.10 | sabinene | |
30 | 3.50 | beta- | selinene |
42 | 0.30 | spathulenol | |
11 | 0.20 | gamma- | terpinene |
14 | trace | terpinolene | |
51 | 0.40 | tetradecanal | |
53 | 2.60 | tetradecanol | |
57 | 0.50 | tetradecanyl acetate | |
1 | trace | alpha- | thujene |
20 | 0.20 | (Z)- | thujenol |
37 | 0.60 | thujopsene | |
52 | 0.50 | tridecanal | |
55 | 0.40 | 13- | tridecanolide |
18 | 0.30 | 4,4,6- | trimethyl-2-cyclohexen-1-one |
48 | trace | 5- | undecen-3-yne |
K. M. Kerrola and H. P. Kallio, Extraction of volatile compounds of Angelica (Angelica archangelica L.) root by liquid carbon dioxide. J. Agric. Food Chem., 42, 2234-2245 (1994). P&F 21, No. 5, 57, (1996) | |||
baccharis coridifolia oil argentina | |||
# | % | Leftshift | Components |
13 | 0.20 | allo- | aromadendrene |
11 | 0.20 | (E)-alpha- | bergamotene |
17 | 3.30 | bicyclogermacrene | |
18 | 0.40 | beta- | bisabolene |
19 | 0.90 | delta- | cadinene |
20 | 0.20 | alpha- | calacorene |
22 | 0.10 | beta- | calacorene |
9 | 10.80 | beta- | caryophyllene |
8 | 34.30 | iso | caryophyllene |
24 | 9.80 | caryophyllene oxide | |
28 | 2.00 | cedr-8(15)-en-9-alpha-ol | |
7 | 1.20 | beta- | elemene |
6 | 0.10 | delta- | elemene |
21 | 0.60 | elemol | |
14 | 5.00 | germacrene D | |
25 | 0.30 | globulol | |
16 | 0.50 | (E)-beta- | guaiene |
10 | 0.20 | beta- | gurjunene |
12 | 0.40 | alpha- | humulene |
29 | 2.80 | 14- | hydroxy-9-epi-beta-caryophyllene |
4 | 0.10 | limonene | |
26 | 0.80 | epi-alpha- | muurolol |
3 | 0.10 | myrcene | |
5 | 0.60 | (Z)-beta- | ocimene |
2 | 0.10 | beta- | pinene |
27 | 1.70 | selin-11-en-4alpha-ol | |
15 | 8.20 | beta- | selinene |
23 | 4.20 | spathulenol | |
1 | 0.10 | tricyclene | |
J. of Ess. Oil Res. 13, No. 1, 23, (2001) | |||
bergamot oil | |||
# | % | Leftshift | Components |
60 | 0.162-0.437 | (E)-alpha- | bergamotene |
58 | 0.017-0.048 | (Z)-alpha- | bergamotene |
66 | 0.012-0.076 | bicyclogermacrene | |
67 | 0.000-trace | (Z)-alpha- | bisabolene |
70 | 0.000-0.010 | (Z)-gamma- | bisabolene |
69 | 0.212-0.648 | beta- | bisabolene |
76 | 0.007-0.030 | alpha- | bisabolol |
45 | 0.010-0.037 | bornyl acetate | |
4 | 0.019-0.053 | camphene | |
75 | 0.007-0.023 | campherenol | |
30 | 0.001-0.012 | camphor | |
11 | 0.001-0.009 | delta-3- | carene |
39 | 0.000-trace | carvone | |
59 | 0.154-0.524 | beta- | caryophyllene |
15 | 0.010-0.022 | 1,8- | cineole |
31 | 0.005-0.030 | citronellal | |
53 | 0.007-0.053 | citronellyl acetate | |
13 | 0.010-0.893 | para- | cymene |
35 | 0.037-0.103 | decanal | |
43 | 0.000-0.009 | 2- | decenal |
57 | 0.009-0.053 | decyl acetate | |
74 | 0.006-0.024 | 2,3- | dimethyl-3-(4-methyl-3-pentenyl)-2-norbornanol |
56 | 0.002-0.055 | dodecanal | |
34 | 0.000-0.006 | dodecane | |
64 | 0.000-0.009 | dodecanol | |
51 | 0.000-0.007 | delta- | elemene |
68 | 0.000-trace | (E,E)-alpha- | farnesene |
62 | 0.033-0.089 | (Z)-beta- | farnesene |
44 | 0.199-0.494 | geranial + perillaldehyde | |
42 | 0.000-0.010 | geraniol | |
55 | 0.107-0.799 | geranyl acetate | |
71 | 0.000-0.001 | germacrene B | |
65 | 0.033-0.106 | germacrene D | |
26 | trace-0.019 | heptyl acetate | |
10 | 0.000-0.002 | hexyl acetate | |
61 | 0.009-0.045 | alpha- | humulene |
46 | 0.000-0.009 | indole | |
14 | 25.385-53.187 | limonene + beta-phellandrene | |
28 | 0.001-0.015 | (E)- | limonene oxide |
27 | 0.001-0.019 | (Z)- | limonene oxide |
24 | 1.745-22.681 | linalool | |
23 | 0.000-trace | (E)- | linalool oxide |
21 | 0.000-trace | (Z)- | linalool oxide |
41 | 15.616-41.363 | linalyl acetate | |
50 | 0.013-0.066 | linalyl propionate | |
49 | 0.002-0.015 | methyl geranate | |
6 | 0.001-0.009 | 6- | methyl-5-hepten-2-one |
7 | 0.635-1.575 | myrcene | |
38 | 0.105-0.344 | neral | |
37 | 0.010-0.111 | nerol + citronellol | |
72 | 0.007-0.036 | (E)- | nerolidol |
54 | 0.126-0.670 | neryl acetate | |
25 | 0.012-0.076 | nonanal | |
48 | 0.004-0.053 | nonyl acetate | |
77 | 0.010-0.095 | nootkatone | |
17 | 0.104-0.361 | (E)-beta- | ocimene |
16 | 0.011-0.068 | (Z)-beta- | ocimene |
8 | 0.025-0.084 | octanal | |
20 | 0.001-0.021 | octanol | |
36 | 0.071-0.199 | octyl acetate | |
9 | 0.016-0.056 | alpha- | phellandrene |
3 | 0.720-1.844 | alpha- | pinene |
5 | 4.814-12.802 | beta- | pinene + sabinene |
29 | 0.000-0.004 | iso | pulegol |
19 | 0.015-0.063 | (Z)- | sabinene hydrate |
40 | 0.048-0.127 | (E)- | sabinene hydrate acetate |
63 | 0.001-0.016 | (Z)-beta- | santalene |
32 | 0.008-0.042 | terpinen-4-ol | |
12 | 0.081-0.282 | alpha- | terpinene |
18 | 5.266-11.151 | gamma- | terpinene |
33 | 0.030-0.126 | alpha- | terpineol |
22 | 0.210-0.476 | terpinolene | |
52 | 0.071-0.263 | alpha- | terpinyl acetate |
73 | 0.000-0.010 | tetradecanal | |
2 | 0.187-0.491 | alpha- | thujene |
1 | 0.001-0.005 | tricyclene | |
47 | 0.004-0.024 | undecanal | |
A. Verzera, G. Lamonica, L. Mondello, A. Trozzi and G. Dugo, The composition of bergamot oil. Perfum. Flavor., 21(6), 19-34 (1996). P&F 24, No. 5, 45, (1999) | |||
bergamot oil | |||
# | % | Leftshift | Components |
0.36 | (E)-alpha- | bergamotene | |
trace | (Z)-alpha- | bergamotene | |
0.6 | beta- | bisabolene | |
trace | alpha- | bisabolol | |
trace | beta- | bisabolol | |
trace | camphorenone | ||
0.09 | carvone | ||
0.2 | beta- | caryophyllene | |
0.02 | citronellal | ||
0.02 | citronellyl acetate | ||
trace | coumarin | ||
3.5 | para- | cymene | |
0.03 | decyl acetate | ||
trace | 8,9- | didehydronootkatone | |
trace | dihydrojasmone | ||
0.04 | beta- | farnesene | |
trace | farnesol | ||
0.01 | alpha- | fenchyl alcohol | |
0.6 | geraniol | ||
0.8 | geranyl acetate | ||
0.02 | germacrene D | ||
trace | guaienol | ||
0.04 | alpha- | humulene | |
trace | indole | ||
trace | (Z)- | jasmone | |
trace | lanceal | ||
26.0 | (+)- | limonene | |
16.0 | linalool | ||
34.0 | linalyl acetate | ||
trace | methyl N-methyl anthranilate | ||
1.3 | myrcene | ||
0.6 | neral + geranial | ||
0.08 | nerol | ||
0.02 | nerolidol | ||
1.2 | neryl acetate | ||
0.08 | nonanal | ||
trace | nootkatone | ||
0.07 | octanal | ||
0.02 | octanol | ||
trace | 5- | octen-2-one | |
0.15 | octyl acetate | ||
0.1 | beta- | phellandrene | |
2.2 | alpha- | pinene | |
10.0 | beta- | pinene | |
1.0 | sabinene | ||
trace | 2- | santalene hydrates | |
trace | beta- | sinensal | |
trace | spathulenol | ||
0.06 | terpinen-4-ol | ||
3.2 | alpha- | terpinene | |
11.0 | gamma- | terpinene | |
0.3 | alpha- | terpineol | |
1.0 | terpinolene | ||
carrot seed oil | |||
# | % | Leftshift | Components |
36 | 0.08 | (E)- | anethole |
21 | 0.73 | (E)-alpha- | bergamotene |
20 | 1.08 | (Z)-alpha- | bergamotene |
38 | 0.23 | beta- | bisabolene |
43 | 0.21 | alpha- | bisabolol |
42 | 0.27 | 3- | butyl phthalide |
2 | 0.44 | camphene | |
39 | 5.68 | carotol | |
35 | 0.23 | carvomenthone | |
15 | 3.56 | beta- | caryophyllene |
37 | 1.09 | caryophyllene oxide | |
40 | 0.29 | cedrene oxide | |
14 | 0.17 | alpha- | copaene |
10 | 0.41 | para- | cymene |
13 | 0.39 | daucene | |
41 | 0.14 | daucol | |
18 | 0.42 | alpha- | farnesene |
23 | 0.60 | beta- | farnesene |
31 | 0.89 | geranial | |
32 | 34.17 | geranyl acetate | |
30 | 1.13 | alpha- | humulene |
7 | 0.48 | limonene | |
12 | 0.11 | linalool | |
19 | 1.24 | longifolene | |
25 | 0.18 | para- | mentha-1,3-dien-7-ol |
5 | 1.87 | myrcene | |
29 | 0.53 | neral | |
33 | 1.01 | nerol | |
8 | 1.92 | (E)-alpha- | ocimene |
1 | 9.09 | alpha- | pinene |
3 | 4.49 | beta- | pinene |
4 | 9.44 | sabinene | |
34 | 0.14 | sabinene hydrate | |
17 | 0.40 | alpha- | santalene |
22 | 0.67 | beta- | santalene |
44 | 0.13 | sedanenolide | |
45 | 0.40 | sedanolide (3-butyl-3a,4,5,6-tetrahydrophthalide) | |
28 | 0.44 | alpha- | selinene |
27 | 0.23 | beta- | selinene |
16 | 0.31 | terpinen-4-ol | |
6 | 0.96 | alpha- | terpinene |
9 | 0.36 | gamma- | terpinene |
24 | 1.65 | alpha- | terpineol |
11 | 0.28 | terpinolene | |
26 | 2.34 | verbenol | |
F. Perineau, L. Ganou and A. Gaset, Etude de la production d’huile essentielle de fruit de carotte. Ind. Aliment. Agric., 108, 357-366 (1991). P&F 17, No. 3, 61, (1992) | |||
carum petroselinum herb oil | |||
This same year, a sample of Egyptian parsley herb oil was subjected to analysis by CC and CC/MS (El-Nikeety et al. 1998). This oil was found to contain: | |||
# | % | Leftshift | Components |
21 | 0.20 | apiole | |
17 | 0.21 | beta- | bisabolene |
2 | 0.06 | camphene | |
15 | 0.05 | beta- | caryophyllene |
13 | 0.82 | para- | cymene |
14 | 5.35 | alpha-para- | dimethyl styrene |
19 | 0.15 | elemicin | |
16 | 0.53 | alpha- | humulene |
6 | 5.36 | limonene | |
10 | 6.20 | para- | mentha-1,3,8-triene |
22 | 0.40 | 4- | methyl pyridine amine |
11 | 23.75 | myrcene | |
20 | 8.79 | myristicin | |
5 | 1.46 | alpha- | phellandrene |
7 | 19.47 | beta- | phellandrene |
1 | 6.94 | alpha- | pinene |
3 | 4.57 | beta- | pinene |
4 | 0.63 | sabinene | |
8 | 0.17 | alpha- | terpinene |
18 | 0.13 | alpha- | terpineol |
9 | 2.78 | terpinolene | |
12 | 0.06 | 5- | undec-5-yne |
M. M. A. El-Nikeety, A. T. M. El-Alek, M. M. I. A. El-Hady and A. Z. M. Badei, Changes in physical properties and chemical constituents of parsley herb volatile oil during storage, Egypt. J. Food Sci., 26-28 (1998). P&F 26, No. 2, 22, (2001) | |||
cedarwood oil china | |||
# | % | Leftshift | Components |
27 | 0.30 | abietadiene | |
7 | 0.60 | alpha- | acoradiene |
8 | 0.30 | beta- | acoradiene |
19 | 2.60 | alpha- | alaskene |
13 | 0.10 | beta- | alaskene |
18 | 0.40 | beta- | bisabolene |
24 | 0.80 | alpha- | bisabolol |
2 | 26.40 | alpha- | cedrene |
3 | 9.20 | beta- | cedrene |
21 | 9.60 | cedrol | |
23 | 0.10 | 6-iso | cedrol |
25 | 0.10 | cedryl acetate | |
26 | 0.10 | cembrene | |
16 | 1.40 | alpha- | chamigrene |
9 | 2.20 | beta- | chamigrene |
17 | 3.40 | cuparene | |
11 | 0.40 | ar- | curcumene |
10 | 0.20 | gamma- | curcumene |
20 | 0.10 | (E)-beta- | farnesene |
6 | 0.10 | (Z)-beta- | farnesene |
5 | 0.20 | alpha- | himachalene |
15 | 1.40 | beta- | himachalene |
1 | 0.70 | methyl chavicol | |
14 | 3.10 | alpha- | selinene |
12 | 0.20 | beta- | selinene |
4 | 29.90 | thujopsene | |
22 | 9.50 | widdrol | |
R. P. Adams, Cedarwood oil- analyses and properties. In Modern methods of plant analysis new series. Vol. 12. Essential Oils and Waxes. Edits., H. F. Linskens and J. F. Jackson, pp. 159-173, Springer Verlag. New York (1991). P&F 23, No. 5, 55, (1998) | |||
cinnamomum fragrans baillon leaf oil madagascar | |||
# | % | Leftshift | Components |
17 | trace | (E)-alpha- | bergamotene |
27 | 0.20 | beta- | bisabolene |
28 | 1.60 | delta- | cadinene |
29 | 0.70 | calamenene | |
3 | 0.10 | camphene | |
19 | 12.70 | beta- | caryophyllene |
30 | 1.20 | caryophyllene oxide | |
10 | 28.10 | 1,8- | cineole |
15 | 0.40 | alpha- | copaene |
32 | trace | epi- | cubebol |
13 | 2.40 | para- | cymene |
18 | trace | beta- | elemene |
23 | trace | (E)-beta- | farnesene |
22 | 5.20 | (Z)-beta- | farnesene |
25 | 1.30 | germacrene D | |
21 | 0.90 | alpha- | humulene |
9 | 6.30 | limonene | |
16 | 2.20 | linalool | |
26 | 0.20 | alpha- | muurolene |
33 | 0.10 | epi-alpha- | muurolol |
7 | 2.40 | myrcene | |
31 | 0.70 | (E)- | nerolidol |
12 | 0.20 | (E)-beta- | ocimene |
6 | 0.20 | alpha- | phellandrene |
1 | 8.00 | alpha- | pinene |
4 | 9.70 | beta- | pinene |
5 | 5.60 | sabinene | |
20 | 1.40 | terpinen-4-ol | |
8 | 1.20 | alpha- | terpinene |
11 | 2.20 | gamma- | terpinene |
24 | 1.00 | alpha- | terpineol |
14 | 0.60 | terpinolene | |
2 | 1.00 | alpha- | thujene |
J. of Ess. Oil Res. 12, No. 5, 537, (2000) | |||
citrus limon peel oil c.p. california | |||
# | % | Leftshift | Components |
30 | 0.03 | (Z)-alpha- | bergamotene |
32 | 0.38 | (E)-alpha- | bergamotene + citronellyl propionate |
36 | 0.55 | beta- | bisabolene |
52 | 0.04 | alpha- | bisabolol |
16 | 0.01 | borneol | |
3 | 0.06 | camphene | |
51 | 0.03 | campherenol | |
46 | 0.008 | camphor | |
31 | 0.22 | beta- | caryophyllene |
23 | 0.08 | citronellal | |
19 | 0.06 | citronellol + nerol | |
38 | 0.03 | citronellyl acetate | |
9 | 0.14 | para- | cymene |
24 | 0.05 | decanal | |
47 | 0.01 | exo-(Z)-4,7- | dimethyl bicyclo(3.2.1)oct-3-en-6-one |
50 | 0.03 | 2,3- | dimethyl-3-(4-methyl-3-pentenyl)-2-norbornanol |
29 | 0.01 | dodecanal + decyl acetate | |
33 | 0.03 | (E)-beta- | farnesene |
26 | 1.18 | geranial | |
20 | 0.03 | geraniol | |
40 | 0.52 | geranyl acetate | |
42 | 0.01 | geranyl propionate | |
34 | 0.02 | alpha- | humulene |
10 | 65.65 | limonene + 1,8-cineole + (E)-beta-ocimene | |
44 | 0.007 | (E)- | limonene 1,2-oxide |
45 | 0.006 | (Z)- | limonene 1,2-oxide |
37 | 0.007 | methyl geranate | |
6 | 1.58 | myrcene | |
25 | 0.74 | neral | |
49 | 0.004 | nerolidol | |
39 | 0.60 | neryl acetate | |
41 | 0.007 | neryl propionate | |
22 | 0.12 | nonanal | |
11 | 0.09 | (E)-beta- | ocimene |
21 | 0.08 | octanal | |
27 | 0.03 | perillaldehyde | |
7 | 0.04 | alpha- | phellandrene |
2 | 1.75 | alpha- | pinene |
5 | 11.13 | beta- | pinene |
48 | 0.004 | piperitone | |
4 | 1.85 | sabinene | |
15 | 0.13 | (Z)- | sabinene hydrate + linalool |
14 | 0.01 | (E)- | sabinene hydrate + octanol |
35 | 0.01 | beta- | santalene |
17 | 0.11 | terpinen-4-ol | |
8 | 0.16 | alpha- | terpinene |
12 | 8.32 | gamma- | terpinene |
18 | 0.16 | alpha- | terpineol |
13 | 0.34 | terpinolene | |
1 | 0.38 | alpha- | thujene |
28 | 0.03 | undecanal | |
43 | 0.009 | undecyl acetate | |
T. S. Chamblee, B. C. Clark. G. B. Brewster, T. Radford and G. A. Iacobucci, Quantitative analysis of the volatile constituents of lemon peel oil. Effects of silica gel chromatography on the imposition of its hydrocarbon and oxygenated fractions. J. Agric, Food Chem., 39, 162-169 (1991). P&F 17, No. 1, 45, (1992) | |||
citrus limon peel oil italy | |||
# | % | Leftshift | Components |
19 | 24.50 | (E)-alpha- | bergamotene |
17 | 2.70 | (Z)-alpha- | bergamotene |
28 | 0.40 | (E)-gamma- | bisabolene |
26 | 0.50 | (Z)-gamma- | bisabolene |
25 | 37.10 | beta- | bisabolene |
4 | 0.06 | camphene | |
9 | trace | delta-3- | carene |
18 | 13.80 | beta- | caryophyllene |
23 | 0.70 | gamma- | curcumene |
11 | 0.27 | para- | cymene |
27 | 0.40 | (E)-beta- | farnesene |
21 | 1.60 | (Z)-beta- | farnesene |
20 | 1.20 | alpha- | humulene |
12 | 69.93 | limonene | |
7 | 1.51 | myrcene | |
14 | 0.16 | (E)-beta- | ocimene |
13 | 0.10 | (Z)-beta- | ocimene |
8 | 0.04 | alpha- | phellandrene |
3 | 1.90 | alpha- | pinene |
6 | 12.40 | beta- | pinene |
5 | 1.99 | sabinene | |
22 | 1.30 | (Z)-beta- | santalene |
10 | 0.21 | alpha- | terpinene |
15 | 10.56 | gamma- | terpinene |
16 | 0.43 | terpinolene | |
2 | 0.43 | alpha- | thujene |
1 | 0.01 | tricyclene | |
24 | 1.70 | valencene + unknown | |
GC profile belongs to sesquiterpene hydrocarbon fraction of lemon oil. L. Mondello, P. Dugo, K. D. Bartle, G. Dugo and A. Cotroneo, Automated HPLC/HBGC: A Powerful Method for Essential Oil Analysis Part V. Identification of Terpene Hydrocarbons of Bergamot, Lemon, Mandarin, Sweet Orange, Bitter Orange, Grapefruit, Clementine and Mexican Lime Oil by Coupled HPLC-HRGC-MS (lTD). Flav. Fragr. J., 10, 33-42 (1995). P&F 21, No. 1, 37, (1996) | |||
citrus x latifolia oil expressed | |||
# | % | Leftshift | Components |
33 | 0.8 | alpha- | bergamotene |
52 | trace | (E)-alpha- | bisabolene |
48 | 0.8 | beta- | bisabolene |
68 | trace | alpha- | bisabolol |
25 | trace | borneol | |
32 | trace | bornyl acetate | |
69 | 0.1 | alpha- | cadinol |
3 | 0.1 | camphene | |
6 | trace | delta-3- | carene |
35 | 0.3 | beta- | caryophyllene |
73 | trace | cinnamic alcohol | |
22 | 0.1 | citronellal | |
40 | trace | citronellyl acetate | |
19 | trace | alpha- | cubebene |
27 | trace | beta- | cubebene |
15 | 0.1 | para- | cymene |
24 | 0.1 | decanal | |
72 | trace | decanoic acid | |
61 | trace | (E)-2- | dodecen-1-ol |
34 | 0.1 | beta- | elemene |
21 | 0.1 | delta- | elemene |
37 | trace | gamma- | elemene |
67 | trace | gamma- | eudesmol |
50 | 0.2 | (E,E)-alpha- | farnesene |
41 | 0.1 | (E)-beta- | farnesene |
71 | trace | (E,E)- | farnesyl acetate |
49 | 2.3 | geranial | |
58 | trace | geraniol | |
51 | 1.0 | geranyl acetate | |
45 | trace | geranyl formate | |
56 | 0.1 | germacrene B | |
46 | 0.1 | germacrene D | |
70 | trace | heptadecanal | |
65 | 0.1 | hexadecanal | |
42 | trace | alpha- | humulene |
10 | 52.2 | limonene | |
26 | 0.2 | linalool | |
30 | trace | linalyl acetate | |
59 | trace | para- | mentha-1,8-dien-10-yl acetate |
38 | trace | (E)-para- | mentha-2,8-dien-1-ol |
7 | 1.3 | myrcene | |
43 | 1.2 | neral | |
62 | trace | (E)- | nerolidol |
47 | 1.4 | neryl acetate | |
18 | trace | nonanal | |
31 | 0.1 | nonyl acetate | |
14 | trace | (E)-beta- | ocimene |
12 | trace | (Z)-beta- | ocimene |
74 | trace | octadecanal | |
17 | trace | octanal | |
29 | trace | octanol | |
23 | trace | pentadecane | |
54 | trace | perillaldehyde | |
60 | trace | perillyl acetate | |
8 | trace | alpha- | phellandrene |
11 | trace | beta- | phellandrene |
53 | trace | beta-sesqui | phellandrene |
2 | 3.2 | alpha- | pinene |
4 | 13.0 | beta- | pinene |
57 | trace | iso | piperitenone |
5 | 2.0 | sabinene | |
20 | 0.1 | (E)- | sabinene hydrate |
28 | 0.1 | (Z)- | sabinene hydrate |
39 | trace | beta- | santalene |
64 | trace | spathulenol | |
9 | 0.3 | alpha- | terpinene |
13 | 17.0 | gamma- | terpinene |
44 | 0.4 | alpha- | terpineol |
16 | 0.7 | terpinolene | |
55 | trace | tetradecanal | |
1 | trace | alpha- | thujene |
66 | trace | thymol | |
36 | trace | undecanal | |
75 | trace | undecanoic acid | |
63 | trace | viridiflorol | |
S. M. Njoroge, H. Ueda, H. Kusunose and M. Sawamura, Japanese sour citrus fruits Part IV. Volatile compounds of Naaoshichi and Tahiti lime essential oils. Flav. Fragr. J., 11, 25-29 (1996). P&F 24, No. 2, 35, (1999) | |||
cochlospermum planchonii oil | |||
# | % | Leftshift | Components |
3 | 0.20 | beta- | bisabolene |
1 | 0.10 | dodecanal | |
2 | 0.70 | dodecanol | |
8 | 4.70 | dodecyl acetate | |
11 | 0.20 | 3- | hexadecanone |
13 | 2.50 | 3- | hexadecenone |
16 | 1.00 | hexadecyl acetate | |
12 | 0.40 | 1- | hydroxy-3-tetradecanone |
10 | 0.20 | methyl myristate | |
15 | 0.10 | 3- | octadecenone |
7 | 2.00 | tetradecanal | |
9 | 1.00 | tetradecanol | |
6 | 69.80 | 3- | tetradecanone |
5 | 0.70 | 3- | tetradecenone |
14 | 14.40 | tetradecyl acetate | |
4 | 0.40 | 2- | tridecanone |
J. of Ess. Oil Res. 13, No. 1, 65, (2001) | |||
conyza canadensis (l.) cronq. oil | |||
# | % | Leftshift | Components |
56 | trace | anthracene | |
55 | trace | benzyl benzoate | |
32 | 7.00 | (E)-alpha- | bergamotene |
29 | trace | (Z)-alpha- | bergamotene |
51 | 0.30 | (Z)-(E)-alpha- | bergamotol |
44 | 0.20 | beta- | bisabolene |
53 | 0.40 | alpha- | bisabolol |
45 | 0.10 | delta- | cadinene |
2 | trace | camphene | |
21 | 0.80 | trans- | carveol |
23 | 0.30 | cis- | carveol |
24 | 1.10 | carvone | |
26 | trace | trans- | carvyl acetate |
30 | 0.20 | beta- | caryophyllene |
49 | 0.70 | caryophyllene oxide | |
27 | 0.10 | alpha- | copaene |
28 | 0.10 | beta- | cubebene |
36 | 2.20 | ar- | curcumene |
20 | trace | decanal | |
18 | 0.20 | dihydrocarveol | |
16 | trace | (E)- | dihydrocarvone |
47 | 0.20 | 1,5- | epoxysalvial-4(14)-en-1-one |
39 | 0.90 | (E)-beta- | farnesene |
33 | 0.60 | (Z)-beta- | farnesene |
43 | 0.20 | alpha- | farnesene |
31 | trace | geranyl acetone | |
38 | 0.70 | germacrene D | |
52 | trace | gossonorol | |
34 | 0.10 | alpha- | humulene |
35 | trace | (E)-beta- | ionone |
37 | 0.30 | (Z)- | lachnophyllum ester |
6 | 70.00 | limonene | |
12 | 0.30 | (E)- | limonene oxide |
9 | 0.10 | linalool | |
40 | 2.40 | (Z,Z)- | matricaria ester |
15 | 0.20 | (E)-para- | mentha-1(7),8-dien-2-ol |
22 | 0.10 | (Z)-para- | mentha-1(7),8-dien-2-ol |
10 | 0.60 | (E)-para- | mentha-2,8-dien-1-ol |
11 | 0.70 | (Z)-para- | mentha-2,8-dien-1-ol |
13 | trace | para- | methyl acetophenone |
50 | 0.40 | mint ketone (salvial-4(14)-en-1-one) | |
42 | 0.10 | alpha- | muurolene |
5 | 1.20 | myrcene | |
46 | 0.30 | (E)- | nerolidol |
8 | trace | nonanal | |
14 | 0.10 | nonanol | |
7 | 1.30 | (E)-beta- | ocimene |
54 | 0.20 | octadecanal | |
25 | 0.10 | perillaldehyde | |
1 | 0.20 | alpha- | pinene |
4 | 0.80 | beta- | pinene |
19 | 0.40 | (Z)- | piperitol |
3 | trace | sabinene | |
48 | 0.20 | spathulenol | |
17 | trace | alpha- | terpineol |
41 | 0.20 | zingiberene | |
J. of Ess. Oil Res. 12, No. 6, 781, (2000) | |||
curcuma longa root oil vietnam | |||
# | % | Leftshift | Components |
10 | 0.20 | beta- | bisabolene |
7 | 0.90 | beta- | caryophyllene |
2 | 0.10 | 1,8- | cineole |
12 | 1.50 | ar- | curcumene |
17 | 1.00 | curzerenone | |
3 | 0.05 | para- | cymene |
6 | 0.05 | beta- | elemene |
8 | 0.50 | alpha- | humulene |
1 | 0.05 | limonene | |
11 | 3.00 | beta-sesqui | phellandrene |
5 | 0.05 | terpinen-4-ol | |
4 | 0.90 | terpinolene | |
13 | 0.15 | alpha,alpha,para- | trimethyl benzyl alcohol |
14 | 30.00 | alpha- | turmerone |
16 | 10.00 | ar- | turmerone |
15 | 10.00 | beta- | turmerone |
9 | 1.50 | zingiberene | |
T. S. Phan, N. H. Van, X. D. Nguyen and S. B. Luong, Chemical composition of the essential oil from rhizome Curcuma longa Linn. of Vietnam. Tap Chi Hoa Hoc, 25(1), 18-21 (1987). P&F 25, No. 6, 32, (2000) | |||
cymbopogon pendulus praman oil | |||
# | % | Leftshift | Components |
22 | 0.08 | beta- | bisabolene |
13 | 0.05 | borneol | |
24 | 0.44 | alpha- | cadinol |
10 | 0.09 | camphor | |
20 | 0.18 | beta- | caryophyllene |
23 | 0.09 | caryophyllene oxide | |
11 | 0.10 | citronellal | |
17 | 0.10 | citronellyl acetate | |
4 | 0.05 | para- | cymene |
19 | 0.15 | beta- | elemene |
16 | 80.21 | geraniol | |
18 | 4.60 | geranyl acetate | |
21 | 0.18 | alpha- | humulene |
5 | 0.06 | limonene | |
9 | 1.42 | linalool | |
1 | 0.48 | 6- | methyl-5-hepten-2-one |
2 | 0.13 | myrcene | |
15 | 35.25 | neral | |
7 | 0.08 | (E)-beta- | ocimene |
6 | 0.10 | (Z)-beta- | ocimene |
3 | 0.05 | alpha- | phellandrene |
12 | 0.26 | iso | pulegol |
14 | 0.48 | terpinen-4-ol | |
8 | 0.05 | terpinolene | |
daucus carota ssp. maximus (desf.) ball seed oil | |||
# | % | Leftshift | Components |
15 | 17.65 | beta- | asarone |
8 | 0.28 | alpha- | bergamotene |
16 | 3.00 | alpha- | bisabolene |
13 | 34.70 | beta- | bisabolene |
17 | 0.39 | preiso | calamendiol |
7 | 1.48 | beta- | caryophyllene |
4 | trace | para- | cymene |
10 | 0.43 | (E)-beta- | farnesene |
9 | 0.31 | alpha- | humulene |
5 | trace | limonene | |
6 | 1.97 | methyl eugenol | |
11 | 37.22 | (E)- | methyl isoeugenol |
14 | 0.25 | beta-sesqui | phellandrene |
1 | trace | alpha- | pinene |
3 | trace | beta- | pinene |
2 | trace | sabinene | |
12 | 0.65 | shyobunone | |
H. E. A. Saad, S. H. El-Sharkawy and A. F. Halim, Essential oils of Daucus carota ssp. maximus. Pharm. Acta Helv. 70, 79-84 (1995). P&F 24, No. 6, 45, (1999) | |||
foeniculum vulgare mill. var. vulgare (mill.) thell. flower oil lithuania | |||
# | % | Leftshift | Components |
17 | 52.65 | (E)- | anethole |
16 | 0.29 | para- | anisaldehyde |
19 | 0.15 | beta- | bisabolene |
20 | 0.12 | delta- | cadinene |
2 | 0.13 | camphene | |
14 | 0.21 | camphor | |
7 | 1.21 | para- | cymene |
12 | 15.59 | fenchone | |
18 | 0.33 | germacrene D | |
9 | 10.31 | limonene | |
15 | 2.73 | methyl chavicol | |
5 | 1.25 | myrcene | |
10 | 0.77 | (Z)-beta- | ocimene |
6 | 6.15 | alpha- | phellandrene |
8 | 0.82 | beta- | phellandrene |
1 | 4.08 | alpha- | pinene |
4 | 0.33 | beta- | pinene |
3 | 0.22 | sabinene | |
11 | 0.81 | gamma- | terpinene |
13 | 0.10 | terpinolene | |
P. R. Venskutonis, A. Dapkevicius and T. A. van Beek, Essential oils of fennel (Foeniculum vulgare Mill,) from Lithuania. J. Essent. Oil Res., 8, 211-213 (1996). P&F 23, No. 2, 47, (1998) | |||
guava fruit oil reunion | |||
# | % | Leftshift | Components |
17 | 0.40 | allo- | aromadendrene |
12 | 0.20 | benzaldehyde | |
29 | 0.10 | (Z)-gamma- | bisabolene |
26 | 0.60 | alpha- | bisabolene |
25 | 0.50 | beta- | bisabolene |
51 | 0.70 | alpha- | bisabolol |
55 | 0.80 | epi-alpha- | bisabolol |
30 | 1.20 | cadina-1,4-diene | |
28 | 2.40 | delta- | cadinene |
53 | 1.40 | alpha- | cadinol |
32 | 0.30 | alpha- | calacorene |
34 | 0.00 | beta- | calacorene |
31 | 1.40 | calamenene | |
14 | 0.10 | 9-epi-beta- | caryophyllene |
15 | 24.60 | beta- | caryophyllene |
42 | 0.40 | alpha- | caryophyllene alcohol |
36 | 5.10 | caryophyllene oxide | |
47 | 2.60 | cinnamyl acetate | |
11 | 2.80 | alpha- | copaene |
10 | 0.10 | alpha- | cubebene |
44 | 1.80 | 1-epi- | cubenol |
43 | 1.20 | 1,10- | di-epi-cubenol |
57 | 1.70 | 2,6- | dimethyl-1-3-6-heptatriene |
1 | 0.10 | ethyl butyrate | |
45 | 0.10 | 10-epi-gamma- | eudesmol |
52 | 0.20 | beta- | eudesmol |
48 | 1.90 | gamma- | eudesmol |
27 | 0.20 | (E,E)-alpha- | farnesene |
58 | 0.40 | farnesol | |
39 | 0.70 | gleenol | |
13 | 0.10 | alpha- | gurjunene |
22 | 0.30 | gamma- | gurjunene |
2 | 0.10 | hexanal | |
9 | 0.30 | hexanol | |
4 | 0.10 | (E)-2- | hexenal |
8 | 0.50 | (Z)-3- | hexen-1-yl acetate |
46 | 0.10 | (Z)-3- | hexen-1-yl benzoate |
7 | 0.10 | hexyl acetate | |
20 | 0.10 | gamma- | himachalene |
18 | 3.20 | alpha- | humulene |
38 | 1.40 | ledol | |
21 | 0.10 | para- | menth-1-en-9-ol |
35 | 0.10 | para- | menth-1(7)-en-9-ol |
37 | 0.20 | methyl eugenol | |
3 | 0.10 | methyl hexanoate | |
16 | 0.10 | muurola-4(14),5-diene | |
24 | 0.40 | alpha- | muurolene |
19 | 0.60 | gamma- | muurolene |
50 | 2.90 | alpha- | muurolol |
49 | 1.40 | epi-alpha- | muurolol |
41 | 18.00 | nerolidol | |
6 | 0.60 | (E)-beta- | ocimene |
5 | 2.20 | (Z)-beta- | ocimene |
33 | 5.40 | 3- | phenyl-1-propyl acetate |
40 | 0.10 | 2- | propenyl-2-phenol |
54 | 0.50 | selin-11-en-4alpha-ol | |
23 | 0.20 | alpha- | selinene |
56 | 4.10 | tricyclo-3-3-13.7-decane | |
J. of Ess. Oil Res. 12, No. 2, 153, (2000) | |||
guava leaf oil cuba | |||
# | % | Leftshift | Components |
11 | trace | acetophenone | |
35 | 0.20 | alpha- | acoradiene |
48 | trace | beta- | acorenol |
34 | trace | allo- | aromadendrene |
3 | 0.20 | benzaldehyde | |
41 | 0.40 | beta- | bisabolene |
42 | 0.20 | (Z)-gamma- | bisabolene |
52 | 3.20 | beta- | bisabolol |
53 | 3.20 | alpha- | bisabolol |
43 | 0.10 | alpha- | calacorene |
17 | trace | camphor | |
25 | trace | carvacrol | |
30 | 21.60 | beta- | caryophyllene |
45 | trace | caryophyllene alcohol | |
46 | 8.20 | caryophyllene oxide | |
49 | 7.90 | cedr-8(15)-en-9-alpha-ol | |
29 | 0.20 | alpha- | cedrene |
31 | trace | beta- | cedrene |
27 | 0.20 | alpha- | copaene |
37 | 1.40 | ar- | curcumene |
7 | trace | para- | cymene |
36 | trace | drima-7,9(11)-diene | |
26 | trace | delta- | elemene |
32 | trace | (Z)-beta- | farnesene |
54 | 0.20 | (E,E)- | farnesol |
55 | trace | (Z,E)- | farnesyl acetate |
1 | 0.10 | (Z)-3- | hexen-1-ol |
2 | trace | (Z)-2- | hexen-1-ol |
20 | trace | (Z)-3- | hexen-1-yl acetate |
28 | trace | (Z)-3- | hexen-1-yl hexanoate |
33 | 3.10 | alpha- | humulene |
47 | 0.20 | humulene oxide II | |
8 | trace | limonene | |
16 | trace | linalool | |
15 | trace | (E)- | linalool oxide furanoid |
14 | trace | (Z)- | linalool oxide furanoid |
22 | trace | 2- | methyl-2-nonen-4-one |
5 | trace | 6- | methyl-5-hepten-2-ol |
4 | trace | 6- | methyl-5-hepten-2-one |
50 | 0.50 | alpha- | muurolol |
6 | trace | myrcene | |
23 | trace | myrtenyl acetate | |
44 | 19.20 | (E)- | nerolidol |
9 | trace | (Z)-beta- | ocimene |
18 | trace | allo- | ocimene |
10 | trace | (E)-beta- | ocimene |
13 | trace | octanol | |
56 | trace | phytol | |
51 | 13.40 | selin-11-en-4alpha-ol | |
39 | 8.30 | alpha- | selinene |
19 | trace | terpinen-4-ol | |
12 | trace | gamma- | terpinene |
21 | trace | alpha- | terpineol |
24 | 0.10 | thymol | |
38 | 8.80 | viridiflorene | |
40 | 0.70 | zingiberene | |
J. of Ess. Oil Res. 13, No. 1, 61, (2001) | |||
helichrysum italicum flower oil | |||
# | % | Leftshift | Components |
14 | 2.01 | (E)-alpha- | bergamotene |
15 | 0.87 | (Z)-alpha- | bergamotene |
17 | 0.03 | (E)-alpha- | bisabolene |
24 | 0.19 | (E)-gamma- | bisabolene |
23 | 0.07 | (Z)-gamma- | bisabolene |
21 | 0.25 | beta- | bisabolene |
34 | 0.81 | bulnesol | |
16 | 1.85 | beta- | caryophyllene |
30 | 0.08 | caryophyllene oxide | |
25 | 1.08 | ar- | curcumene |
19 | 15.98 | gamma- | curcumene |
8 | 0.13 | para- | cymene |
33 | 0.11 | 10-epi-gamma- | eudesmol |
35 | 0.20 | alpha- | eudesmol |
36 | 0.41 | beta- | eudesmol |
29 | 0.45 | geranyl isovalerate | |
32 | 1.65 | guaiol | |
10 | 0.05 | (Z)-3- | hexen-1-yl acetate |
18 | 0.06 | alpha- | humulene |
13 | 1.84 | italicene | |
4 | 1.09 | limonene | |
12 | 1.04 | linalool | |
11 | 0.13 | 6- | methyl-5-hepten-2-one |
22 | 0.37 | alpha- | muurolene |
2 | 0.17 | myrcene | |
27 | 4.47 | nerol | |
31 | 0.20 | (Z)- | nerolidol |
20 | 16.60 | neryl acetate | |
28 | 0.18 | neryl isovalerate | |
26 | 6.53 | neryl propionate | |
6 | 0.05 | (Z)-beta- | ocimene |
7 | 0.40 | (E)-beta- | ocimene + gamma-terpinene |
5 | 0.09 | beta- | phellandrene |
1 | 3.41 | alpha- | pinene |
3 | 0.22 | alpha- | terpinene |
9 | 0.39 | terpinolene | |
A. 0, Tucker, M. J. Maciarello, D, J. Charles and J, E, Simon, Volatile leaf oil of the curry plant (Helichtysurn italicurn (Roth) G. Don subsp. italicum) and dwarf curry plant (subsp, microphyllum (Willd.) Nyman) in the North American herb trade, J. Essent. Oil, Res,, 9,583-565 (1997). P&F 23, No. 5, 55, (1998) | |||
illicium verum fruit oil china | |||
# | % | Leftshift | Components |
23 | 87.89 | (E)- | anethole |
21 | 0.20 | (Z)- | anethole |
22 | 0.28 | para- | anisaldehyde |
25 | 0.06 | anise ketone | |
34 | 0.16 | allo- | aromadendrene |
31 | 0.14 | beta- | bergamotene |
35 | 0.22 | beta- | bisabolene |
16 | 0.04 | borneol | |
15 | 0.05 | iso | borneol |
2 | 0.03 | camphene | |
14 | 0.02 | camphor | |
7 | 0.58 | delta-3- | carene |
29 | 0.35 | beta- | caryophyllene |
28 | 0.31 | iso | caryophyllene |
10 | 0.20 | 1,8- | cineole |
26 | 0.10 | alpha- | copaene |
8 | 0.29 | para- | cymene |
27 | 0.04 | beta- | elemene |
30 | 0.50 | gamma- | elemene |
39 | 0.05 | elemol | |
33 | 0.42 | (E)-beta- | farnesene |
38 | 0.03 | farnesol | |
36 | 0.89 | foeniculin | |
9 | 2.38 | limonene | |
13 | 0.73 | linalool | |
19 | 0.57 | methyl chavicol | |
32 | 0.32 | methyl isoeugenol | |
5 | 0.41 | myrcene | |
37 | 0.12 | nerolidol | |
6 | 0.39 | alpha- | phellandrene |
12 | 0.03 | beta- | phellandrene |
1 | 0.49 | alpha- | pinene |
4 | 0.03 | beta- | pinene |
24 | 0.19 | 4-iso | propyl tropolone |
3 | 0.03 | sabinene | |
20 | 0.14 | safrole | |
17 | 0.03 | terpinen-4-ol | |
11 | 0.30 | gamma- | terpinene |
18 | 0.28 | alpha- | terpineol |
L-F. Sun, Studies on the Chemical constituents of the volatile oil of Illicium verum Hook. f grown in Shangyou. Youji Huaxue, 10, 183-186 (1990). P&F 17, No. 2, 39, (1992) | |||
lavandula latifolia herb oil spain | |||
In 1996, Guillen et a!. analyzed an oil of spike lavender produced from plants cultivated in northeastern Spain. The components identified in this oil on using GC and GC/ MS as the analytical procedures were as follows: | |||
# | % | Leftshift | Components |
40 | 0.11 | bergamotene | |
39 | 0.13 | bergamotene | |
43 | 0.22 | bergamotene | |
50 | 0.24 | beta- | bisabolene |
56 | 0.23 | alpha- | bisabolol |
55 | 0.02 | alpha- | bisabolol oxide |
17 | 1.13 | borneol | |
30 | 0.10 | bornyl acetate | |
26 | 0.11 | bornyl formate | |
35 | 0.17 | iso | bornyl isovalerate |
37 | 0.19 | beta- | bourbonene |
42 | 0.01 | beta- | cadinene |
51 | 0.12 | gamma- | cadinene |
54 | 0.08 | T- | cadinol |
5 | 0.56 | camphene | |
15 | 13.60 | camphor | |
41 | 0.47 | beta- | caryophyllene |
52 | 1.59 | caryophyllene oxide | |
10 | 31.31 | 1,8- | cineole |
38 | 0.02 | beta- | cubebene |
49 | 0.01 | ar- | curcumene |
19 | 0.07 | epoxylinalool | |
45 | 0.03 | farnesene | |
47 | 0.06 | farnesene | |
46 | 0.11 | farnesene | |
53 | 0.03 | farnesol | |
48 | 0.08 | germacrene A | |
25 | 0.05 | hexen-1-yl butyrate | |
27 | 0.42 | hexyl 2-methyl butyrate | |
24 | 0.37 | hexyl butyrate | |
33 | 0.03 | hexyl hexanoate | |
23 | 0.15 | hexyl isobutyrate | |
32 | 0.10 | hexyl tiglate | |
28 | 0.19 | hexyl valerate | |
44 | 0.30 | alpha- | humulene |
14 | 36.94 | linalool | |
13 | 0.05 | (E)- | linalool oxide |
12 | 0.77 | (Z)- | linalool oxide |
29 | 0.10 | linalyl acetate | |
34 | 0.03 | linalyl butyrate | |
7 | 0.15 | myrcene | |
31 | 0.02 | neryl acetate | |
3 | 1.11 | alpha- | pinene |
4 | 1.48 | beta- | pinene |
16 | 0.04 | pinocamphone | |
6 | 0.47 | sabinene | |
11 | 0.61 | (Z)- | sabinene hydrate |
18 | 0.19 | terpinen-4-ol | |
8 | 0.33 | alpha- | terpinene |
21 | 0.79 | alpha- | terpineol |
9 | 0.69 | terpinolene | |
2 | 0.02 | alpha- | thujene |
1 | 0.05 | tricyclene | |
20 | 0.24 | 1,1,3- | trimethyl-2-oxobicyclo(2.2.2)octan-5-one |
22 | 0.12 | verbenone | |
36 | 0.02 | alpha- | ylangene |
M. D. Guillen, N. Cabo and J. Burillo, Characterization of the essential oils of some cultivated aromatic plants of industrial interest. J. Sci. Food Agric., 70, 359-363 (1996). P&F 26, No. 3, 66, (2001) | |||
lime oil distilled mexico | |||
# | % | Leftshift | Components |
61 | 0.70 | (E)-alpha- | bergamotene |
59 | 0.06 | (Z)-alpha- | bergamotene |
75 | 0.01 | (E)-gamma- | bisabolene |
73 | 0.04 | (Z)-gamma- | bisabolene |
72 | 1.04 | beta- | bisabolene |
85 | 0.06 | alpha- | bisabolol |
34 | 0.08 | iso | borneol |
37 | 0.69 | borneol + nonanol | |
2 | 0.02 | bornylene | |
83 | 0.04 | alpha- | cadinol |
82 | 0.02 | T- | cadinol + T-muurolol |
7 | 0.53 | camphene | |
84 | 0.04 | campherenol | |
14 | 0.01 | delta-3- | carene |
43 | trace | trans- | carveol |
46 | 0.01 | carvone | |
60 | 0.60 | beta- | caryophyllene |
79 | 0.07 | caryophyllene alcohol | |
15 | 2.32 | 1,4- | cineole |
44 | 0.02 | citronellol | |
17 | 1.89 | para- | cymene |
42 | 0.20 | decanal | |
54 | 0.04 | decanoic acid + neryl acetate | |
49 | 0.09 | decanol + geranial | |
20 | 0.68 | 2,2- | dimethyl-5(1-methyl propenyl) tetrahydrofuran + (E)-beta-ocimene |
58 | 0.08 | dodecanal | |
65 | 0.04 | dodecanol | |
57 | trace | beta- | elemene |
53 | 0.06 | delta- | elemene |
81 | 0.05 | gamma- | eudesmol |
71 | 0.68 | (E,E)-alpha- | farnesene |
62 | 0.10 | (Z)-beta- | farnesene |
6 | 0.21 | alpha- | fenchene |
27 | 0.79 | alpha- | fenchol |
47 | 0.02 | geraniol | |
56 | 0.10 | geranyl acetate | |
77 | 0.03 | germacrene B | |
63 | 0.09 | alpha- | humulene |
18 | 46.86 | limonene + 1,8-cineole | |
25 | 0.19 | linalool + undecane | |
23 | 0.02 | (Z)- | linalool oxide |
24 | 8.43 | (E)- | linalool oxide + terpinolene + unknown |
29 | 0.02 | (E)-para- | menth-2-en-1-ol |
31 | trace | (Z)-para- | menth-2-en-1-ol |
39 | 0.13 | para- | methyl acetophenone + para-cymen-8-ol |
67 | 0.03 | alpha- | muurolene |
11 | 1.34 | myrcene + dihydro-1,8-cineole | |
28 | 0.08 | myrcenol | |
45 | 0.02 | neral | |
78 | 0.01 | (E)- | nerolidol |
26 | 0.03 | nonanal | |
1 | 0.03 | nonane | |
19 | 0.20 | (Z)-beta- | ocimene |
35 | 0.06 | (E)-beta- | ocimenol |
33 | 0.09 | (Z)-beta- | ocimenol |
12 | 0.04 | octanal | |
22 | 0.02 | octanol | |
50 | 0.02 | perillaldehyde | |
13 | 0.46 | alpha- | phellandrene |
5 | 1.02 | alpha- | pinene |
10 | 1.34 | beta- | pinene |
48 | 0.01 | piperitone | |
9 | 0.02 | sabinene | |
51 | 0.01 | sabinyl acetate | |
64 | 0.04 | beta- | santalene |
86 | 0.01 | selin-7(11)-en-4-ol | |
76 | 0.05 | selina-3,7(11)-diene | |
66 | 0.13 | selina-4,11-diene | |
68 | 0.01 | beta- | selinene |
69 | 0.20 | delta- | selinene |
70 | 0.17 | alpha- | selinene + (Z)-alpha-bisabolene |
74 | 0.05 | epi-alpha- | selinene + delta-cadinene |
30 | 1.20 | terpinen-1-ol | |
38 | 0.97 | terpinen-4-ol | |
16 | 2.84 | alpha- | terpinene |
21 | 11.02 | gamma- | terpinene |
32 | 0.81 | (E)-beta- | terpineol |
36 | 0.22 | (Z)-beta- | terpineol |
40 | 7.90 | alpha- | terpineol |
41 | 1.21 | gamma- | terpineol |
80 | 0.02 | tetradecanal | |
4 | 0.01 | alpha- | thujene |
3 | 0.02 | tricyclene | |
8 | 0.22 | 2,6,6- | trimethyl-2-vinyl tetrahydropyran |
52 | 0.03 | undecanal | |
55 | 0.03 | undecanol | |
T. S. Chamblee and B. C. Clark, Lemon and lime citrus essential oils. Analysis and organoleptic evaluation. In: Bioactive volatile compounds from plants. Edits., R. Teranishi, R. G. Buttery and H. Sugisawa, pp. 88-102, ACS Symp. Series No. 525, Amer. Chem. Soc., Washington (1993). P&F 24, No. 2, 35, (1999) | |||
lippia alnifolia schau. leaf oil brazil | |||
# | % | Leftshift | Components |
9 | 0.30 | beta- | bisabolene |
4 | 1.50 | 1,8- | cineole |
8 | 0.30 | gamma- | himachalene |
5 | 47.20 | limonene | |
3 | 0.30 | methyl anisole | |
2 | 0.40 | myrcene | |
10 | 0.70 | pentadecane | |
6 | 1.70 | piperitenone | |
7 | 44.60 | piperitenone oxide | |
1 | 0.40 | sabinene | |
J. of Ess. Oil Res. 12, No. 3, 295, (2000) | |||
lippia graveolens oil mexico | |||
# | % | Leftshift | Components |
15 | 0.84 | aromadendrene | |
19 | 0.20 | beta- | bisabolene |
26 | 0.09 | borneol | |
20 | 0.08 | delta- | cadinene |
21 | 0.16 | gamma- | cadinene |
22 | 0.06 | calamenene | |
3 | 0.34 | camphene | |
31 | 16.50 | carvacrol | |
14 | 3.40 | beta- | caryophyllene |
28 | 0.33 | caryophyllene oxide | |
23 | 1.84 | 1,8- | cineole |
13 | 0.06 | alpha- | copaene |
9 | 8.12 | para- | cymene |
12 | 0.08 | alpha-para- | dimethyl styrene |
18 | 0.34 | eremophilene | |
16 | 2.10 | alpha- | humulene |
29 | 0.12 | humulene oxide | |
8 | 0.70 | limonene | |
24 | 0.41 | linalool | |
17 | 0.12 | gamma- | muurolene |
5 | 1.10 | myrcene | |
6 | 0.56 | alpha- | phellandrene |
2 | 0.56 | alpha- | pinene |
4 | 0.16 | beta- | pinene |
25 | 0.33 | terpinen-4-ol | |
7 | 0.34 | alpha- | terpinene |
10 | 0.54 | gamma- | terpinene |
27 | 0.48 | alpha- | terpineol + methyl thymol |
11 | 0.08 | terpinolene | |
1 | 0.08 | alpha- | thujene |
30 | 46.30 | thymol | |
J. Pino, A. Rosado, R. Baluja and P. Borges, Analysis of the Essential oil of Mexican Oregano (Lippia graveolens HBK). Nahrung, 3, 289-295 (1989). P&F 21, No. 3, 55, (1996) | |||
origanum majorana herb oil iran | |||
# | % | Leftshift | Components |
23 | 2.80 | beta- | bisabolene |
3 | trace | camphene | |
14 | 0.60 | camphor | |
20 | 3.90 | beta- | caryophyllene |
8 | 5.70 | para- | cymene |
22 | 0.20 | germacrene D | |
21 | 0.20 | alpha- | humulene |
18 | 26.10 | linalyl acetate | |
6 | 2.90 | myrcene | |
9 | 4.10 | (Z)-beta- | ocimene |
7 | 0.20 | alpha- | phellandrene |
2 | 0.80 | alpha- | pinene |
5 | 0.50 | beta- | pinene |
16 | 7.50 | (Z)- | piperitol |
17 | 0.30 | (E)- | piperitol |
4 | 12.00 | sabinene | |
11 | 3.10 | (E)- | sabinene hydrate |
13 | 8.70 | (Z)- | sabinene hydrate |
19 | 0.50 | (Z)- | sabinene hydrate acetate |
24 | 0.20 | spathulenol | |
10 | 8.80 | gamma- | terpinene |
15 | 6.50 | alpha- | terpineol |
12 | 2.00 | terpinolene | |
1 | 0.60 | alpha- | thujene |
J. of Ess. Oil Res. 13, No. 2, 76, (2001) | |||
origanum majorana oil cuba | |||
# | % | Leftshift | Components |
35 | 3.27 | bicyclogermacrene | |
36 | trace | beta- | bisabolene |
27 | 0.49 | bornyl acetate | |
31 | 0.10 | beta- | bourbonene |
37 | trace | delta- | cadinene |
41 | trace | alpha- | cadinol |
3 | 0.81 | camphene | |
21 | 3.43 | camphor | |
29 | 0.46 | carvacrol | |
32 | 3.11 | beta- | caryophyllene |
39 | 0.70 | caryophyllene oxide | |
9 | 4.98 | para- | cymene |
30 | trace | delta- | elemene |
34 | 1.24 | germacrene D | |
40 | 0.09 | globulol | |
33 | 0.27 | alpha- | humulene |
10 | 2.12 | limonene | |
17 | 16.41 | linalool | |
15 | 0.17 | (Z)- | linalool oxide furanoid |
26 | 0.25 | linalyl acetate | |
20 | 0.40 | (E)-para- | menth-2-en-1-ol |
19 | 1.22 | (Z)-para- | menth-2-en-1-ol |
6 | 1.21 | myrcene | |
12 | 0.22 | (E)-beta- | ocimene |
11 | 1.84 | (Z)-beta- | ocimene |
4 | trace | 1- | octen-3-ol |
18 | 2.08 | 1- | octen-3-yl acetate |
7 | 0.11 | alpha- | phellandrene |
2 | 0.64 | alpha- | pinene |
5 | 4.60 | beta- | pinene |
25 | 0.11 | (E)- | piperitol |
24 | 0.22 | (Z)- | piperitol |
14 | 2.26 | (Z)- | sabinene hydrate |
38 | 1.07 | spathulenol | |
22 | 17.67 | terpinen-4-ol | |
8 | 3.32 | alpha- | terpinene |
13 | 8.34 | gamma- | terpinene |
23 | 3.19 | alpha- | terpineol |
16 | 1.52 | terpinolene | |
1 | 0.33 | alpha- | thujene |
28 | 11.55 | thymol | |
J. A. Pino, A. Rosado, M. Estarrón and V. Fuentes, Essential oil of majoram (Origanum majorana L.) grown in Cuba. J. Essent. Oil Res. 9, 479-480 (1997). P&F 25, No. 5, 52, (2000) | |||
origanum majorana var. tenuifolium weston oil cyprus | |||
# | % | Leftshift | Components |
32 | 0.10-0.50 | (E)- | anethole |
30 | 0.30-1.00 | beta- | bisabolene |
26 | 0.10-0.20 | iso | borneol |
21 | 0.10-0.90 | bornyl acetate | |
31 | 0.10-0.30 | delta- | cadinene |
33 | 0.10-0.30 | calamenene | |
2 | 0.50-0.80 | camphene | |
17 | trace-1.80 | camphor | |
36 | 0.50-6.00 | carvacrol | |
29 | 0.00-0.70 | carvone | |
22 | 1.10-2.00 | beta- | caryophyllene |
34 | 0.10-0.80 | caryophyllene oxide | |
8 | 1.30-2.10 | 1,8- | cineole |
16 | trace-0.20 | alpha- | copaene |
11 | 1.00-4.20 | para- | cymene |
37 | trace-0.20 | delta- | elemene |
24 | 0.60-1.20 | geraniol | |
25 | 0.20-0.60 | alpha- | humulene |
7 | 1.20-2.10 | limonene | |
19 | 2.00-4.30 | linalool | |
20 | 0.00-0.10 | linalyl acetate | |
5 | 1.20-2.30 | myrcene | |
13 | 0.00-0.10 | 3- | octanol |
14 | 0.00-trace | 1- | octen-3-ol |
9 | 0.00-0.10 | beta- | phellandrene |
1 | 1.00-1.90 | alpha- | pinene |
3 | 0.20-0.50 | beta- | pinene |
28 | 0.70-1.30 | piperitone | |
4 | 1.10-5.50 | sabinene | |
15 | 1.50-4.70 | (E)- | sabinene hydrate |
18 | 7.40-33.00 | (Z)- | sabinene hydrate |
23 | 16.60-21.60 | terpinen-4-ol | |
6 | 4.70-6.50 | alpha- | terpinene |
10 | 8.30-11.10 | gamma- | terpinene |
27 | 7.30-14.20 | alpha- | terpineol |
12 | 1.70-2.40 | terpinolene | |
35 | 0.00-0.10 | thymol | |
F. I. Jean, G. J. Collin and D. Lord, Essential oils and microwave extracts of cultivated plants. Perfum. Flavor., 17(3), 35-41 (1992). P&F 23, No. 5, 52, (2000) | |||
origanum vulgare ssp. hirtum oil turkey | |||
# | % | Leftshift | Components |
25 | 0.00-0.03 | alpha- | bergamolene |
33 | 0.17-1.03 | beta- | bisabolene |
34 | 0.00-0.19 | gamma- | cadinene |
41 | 0.00-0.12 | T- | cadinol |
36 | 0.00-0.03 | calamenene | |
3 | 0.05--0.56 | camphene | |
6 | 0.07-0.10 | delta-3- | carene |
43 | 23.43-78.73 | carvacrol | |
38 | 0.00-0.09 | carvacryl acetate | |
35 | 0.00-0.04 | trans- | carveol |
26 | 0.62-2.32 | beta- | caryophyllene + terpinen-4-ol |
39 | 0.12-1.06 | caryophyllene oxide | |
11 | 0.15-1.38 | 1,8- | cineole + beta-phellandrene |
37 | 0.00-0.44 | para- | cymen-8-ol |
16 | 4.93-24.90 | para- | cymene |
28 | 0.04-3.53 | (Z)- | dihydrocarvone |
32 | 0.01-0.38 | gamma- | elemene |
30 | 0.00-0.19 | (Z)-beta- | farnesene |
31 | 0.00-0.18 | heptadecane | |
12 | 0.00-0.08 | (Z)-2- | hexenal |
29 | 0.04-0.36 | alpha- | humulene |
10 | 0.02-0.41 | limonene | |
23 | 0.03-0.46 | linalool | |
24 | 0.02-0.06 | linalyl acetate | |
1 | 0.03-0.11 | methyl 2-methyl butyrate | |
27 | 0.35-1.71 | methyl carvacrol + (E)-dihydrocarvone | |
18 | 0.00-0.06 | 6- | methyl-3-heptanol |
7 | 0.45-2.94 | myrcene | |
19 | 0.00-0.01 | nonanal | |
15 | 0.06-0.35 | (E)-beta- | ocimene |
13 | 0.00-0.07 | (Z)-beta- | ocimene |
20 | 0.16-0.93 | 1- | octen-3-ol |
8 | 0.00-0.01 | alpha- | phellandrene |
2 | 0.78-2.69 | alpha- | pinene |
4 | 0.09-0.28 | beta- | pinene |
5 | trace-0.31 | sabinene | |
21 | 0.05-1.41 | (E)- | sabinene hydrate |
22 | 0.14-9.52 | (Z)- | sabinene hydrate |
40 | 0.00-0.16 | spathulenol | |
9 | 0.39-2.31 | alpha- | terpinene |
14 | 1.83-16.32 | gamma- | terpinene |
30 | 0.35-1.45 | alpha- | terpineol + isoborneol |
17 | 0.05-0.24 | terpinolene | |
42 | 0.17-39.81 | thymol | |
K. H. C. Baser, T. Ozek, G. Tumen and E. Sezik, Composition of the Essential Oils of Turkish Origanum Species with Commercial Importance, J, Essent. Oil Res., 5, 619-623 (1993). P&F 20, No. 5, 95, (1995) | |||
persea americana fruit oil cuba | |||
# | % | Leftshift | Components |
10 | trace | benzothiazole | |
18 | 3.00 | (E)-alpha- | bergamotene |
22 | 2.30 | bicyclogermacrene | |
24 | 15.90 | beta- | bisabolene |
25 | 5.00 | delta- | cadinene |
17 | 6.40 | beta- | caryophyllene |
13 | 9.40 | alpha- | copaene |
14 | 3.20 | beta- | cubebene |
11 | 1.40 | cyclosativene | |
5 | trace | para- | cymene |
9 | 9.40 | (E,Z)-2,4- | decadienal |
27 | 3.20 | 1,10- | di-epi-cubenol |
31 | 8.90 | 1- | eicosene |
15 | trace | beta- | elemene |
1 | trace | ethyl acetate | |
23 | 1.40 | (E,E)-alpha- | farnesene |
19 | 2.20 | (E)-beta- | farnesene |
20 | 9.50 | germacrene D | |
21 | trace | (E)- | ionone |
6 | 2.80 | limonene | |
7 | trace | linalool | |
4 | 2.30 | myrcene | |
26 | 90.00 | (E)- | nerolidol |
29 | 3.80 | (E)- | nerolidol acetate |
30 | 2.40 | pimaradiene | |
2 | 5.20 | alpha- | pinene |
3 | 30.40 | beta- | pinene |
8 | 3.20 | terpinen-4-ol | |
28 | 2.80 | 2,4- | tetradecadienal |
16 | 1.60 | 1- | tetradecene |
12 | trace | alpha- | ylangene |
(ug/kg) J. of Ess. Oil Res. 12, No. 3, 377, (2000) | |||
petroselinum crispum leaf oil | |||
# | % | Leftshift | Components |
39 | 27.96 | apiole | |
25 | 0.02 | alpha- | bergamotene |
48 | 0.04 | bergapten | |
30 | 0.41 | beta- | bisabolene |
19 | 0.02 | bornyl acetate | |
37 | 0.78 | 3- | butyl phthalide |
38 | 0.63 | (E)- | butylidene phthalide |
40 | trace | (Z)- | butylidene phthalide |
35 | 0.01 | carotol | |
24 | 0.02 | beta- | caryophyllene |
22 | 0.02 | alpha- | copaene |
7 | 1.46 | para- | cymene |
12 | 0.04 | para- | cymenene |
18 | trace | (E)-2- | decenal |
17 | 0.77 | (Z)-2- | decenal |
29 | 1.67 | 2,6- | dimethoxy-4-(2-propenyl) phenol |
23 | 1.59 | beta- | elemene |
33 | 0.71 | elemicin | |
52 | 1.79 | falcarindiol | |
49 | 15.00 | falcarinol | |
26 | 0.01 | (E)-beta- | farnesene |
27 | 0.17 | germacrene D | |
55 | 0.37 | heraclenol | |
46 | 0.37 | hexadecanoic acid | |
54 | 0.04 | imperatorin | |
42 | 2.79 | (E)- | ligustilide |
44 | 0.01 | (Z)- | ligustilide |
13 | 0.15 | linalool | |
51 | 0.01 | linoleic acid | |
14 | 0.49 | para- | menthatriene |
50 | 0.06 | methyl linoleate | |
5 | 1.94 | myrcene | |
31 | 8.70 | myristicin | |
36 | 0.06 | iso | myristicin |
15 | 0.05 | myrtenal | |
34 | 0.02 | nerolidol | |
9 | 0.02 | (E)-beta- | ocimene |
6 | 0.39 | alpha- | phellandrene |
8 | 1.72 | beta- | phellandrene |
32 | 8.51 | beta-sesqui | phellandrene |
53 | 1.06 | iso | pimpinellin |
2 | 0.25 | alpha- | pinene |
4 | 2.00 | beta- | pinene |
45 | 1.24 | psoralen | |
3 | 0.01 | sabinene | |
41 | 2.29 | sedanenolide | |
43 | 0.05 | (E)- | sedanolide |
10 | 0.09 | gamma- | terpinene |
11 | 2.50 | terpinolene | |
21 | trace | alpha- | terpinyl acetate |
1 | 0.14 | alpha- | thujene |
16 | 0.20 | undecatriene | |
20 | 0.42 | 4- | vinyl guaiacol |
47 | 0.24 | xanthotoxin | |
28 | 0.05 | zingiberene | |
M. Spraul, Strukteraufklarung Wertgebender Inhaltsstoffe aus Petersilienblatten, - Wurzeln and -samen sowie aus Dillbluten. Ph.D. thesis Technische Universtat, Munchen (1991). P&F 21, No. 4, 57, (1996) | |||
petroselinum crispum seed oil | |||
# | % | Leftshift | Components |
23 | 0.07 | apiole | |
20 | 0.07 | beta- | bisabolene |
22 | 0.35 | delta- | cadinene |
3 | 0.13 | camphene | |
16 | 0.09 | para- | cymen-8-ol |
8 | 0.11 | para- | cymene |
13 | 0.28 | alpha-para- | dimethyl styrene |
21 | 2.64 | elemicin | |
18 | 0.08 | beta- | farnesene |
10 | 0.10 | limonene | |
14 | 0.28 | para- | mentha-1,3,8-triene |
15 | 0.10 | para- | methyl acetophenone |
6 | 0.54 | myrcene | |
19 | 47.54 | myristicin | |
7 | 0.28 | alpha- | phellandrene |
9 | 7.52 | beta- | phellandrene |
2 | 22.28 | alpha- | pinene |
5 | 16.20 | beta- | pinene |
4 | 0.87 | sabinene | |
11 | 0.10 | gamma- | terpinene |
17 | 0.07 | alpha- | terpineol |
12 | 0.14 | terpinolene | |
1 | 0.19 | alpha- | thujene |
Y.H. Kim, K. S. Kim and C. K. Hong, Volatile Components of Parsley Leaf and Seed (Petrselinum crispum). J. Korean Agric. Chem. Soc., 33, 62-67 (1990). P&F 16, No. 5, 75, (1991) | |||
phlomis fruticosa l. flower oil greece | |||
# | % | Leftshift | Components |
24 | 0.40 | beta- | bisabolene |
25 | 12.60 | gamma- | bisabolene |
32 | 3.50 | beta- | bisabolol |
13 | 2.60 | beta- | bourbonene |
26 | 1.80 | delta- | cadinene |
31 | 1.10 | alpha- | cadinol |
16 | 8.70 | beta- | caryophyllene |
28 | 1.90 | caryophyllene oxide | |
29 | 1.00 | epi- | cedrol |
12 | 1.20 | alpha- | copaene |
10 | 1.90 | alpha- | cubebene |
14 | 0.80 | beta- | cubebene |
23 | 0.30 | cuparene | |
8 | 0.30 | decanal | |
15 | 0.30 | beta- | elemene |
9 | 0.20 | delta- | elemene |
19 | 1.20 | (E)-beta- | farnesene |
17 | 0.80 | (Z)-beta- | farnesene |
27 | 0.90 | germacrene B | |
20 | 17.80 | germacrene D | |
36 | 0.60 | heneicosane | |
35 | 3.60 | hexadecanoic acid | |
18 | 1.20 | alpha- | humulene |
4 | 0.40 | limonene | |
6 | 0.70 | linalool | |
22 | 0.30 | alpha- | muurolene |
30 | 1.00 | epi-alpha- | muurolol |
34 | 0.30 | nonadecane | |
7 | 0.50 | nonanal | |
5 | 0.30 | (Z)-beta- | ocimene |
2 | 8.90 | alpha- | pinene |
3 | 0.20 | beta- | pinene |
1 | 0.40 | alpha- | thujene |
37 | 2.30 | tricosane | |
33 | 3.10 | 6,10,14- | trimethyl-2-pentadecanone |
11 | 1.70 | alpha- | ylangene |
21 | 0.80 | zingiberene | |
J. of Ess. Oil Res. 12, No. 3, 355, (2000) | |||
pinus sylvestris leaf oil | |||
Also in 1995, Stepen compared the composition of Pinus syIvestris oil produced in Siberia from needles harvested in July and September. He found that the oil varied as follows: | |||
# | % | Leftshift | Components |
16 | 0.2-1.2 | beta- | bisabolene |
25 | 0.4-0.7 | borneol | |
24 | 1.8-2.2 | iso | borneol |
26 | 1.1-3.2 | bornyl acetate | |
4 | 5.3-7.0 | camphene | |
21 | 2.1-2.9 | camphor | |
7 | 3.4-11.6 | delta-3- | carene |
13 | 0.4-0.9 | beta- | caryophyllene |
20 | 0.1-0.2 | alpha- | fenchol |
18 | 1.6-1.9 | fenchone | |
19 | 0.5 | iso | fenchone |
15 | 0.1-0.4 | alpha- | humulene |
8 | 6.1-8.7 | limonene | |
12 | 0.3-0.9 | longifolene | |
17 | 0.3-1.4 | alpha- | muurolene |
14 | 0.1-0.7 | epsilon- | muurolene |
6 | 4.6-5.9 | myrcene | |
9 | 3.5-4.3 | beta- | phellandrene |
3 | 29.2-36.6 | alpha- | pinene |
5 | 2.2-4.2 | beta- | pinene |
1 | 1.8-3.4 | santene | |
23 | 1.2-1.6 | terpinen-4-ol | |
10 | 0.9-1.2 | gamma- | terpinene |
22 | 2.0-2.4 | alpha- | terpineol |
11 | 0.1-0.2 | terpinolene | |
27 | 0.3-0.5 | alpha- | terpinyl acetate |
2 | 1.6-3.1 | tricyclene | |
R. A. Stepen, The composition of essential oil and volatile terpenoids of Pinus sylvestris L. shoots in middle siberia. Rast. Resur., 31, 63-70 (1995). P&F 26, No. 3, 66, (2001) | |||
rosmarinus officinalis leaf oil CO2 extract | |||
# | % | Leftshift | Components |
42 | trace | abietatriene | |
34 | 0.41 | beta- | bisabolene |
15 | 15.56 | borneol | |
23 | 4.94 | iso | bornyl acetate |
36 | 0.35 | delta- | cadinene |
35 | 0.26 | gamma- | cadinene |
25 | 0.19 | alpha- | cadinol |
37 | 0.15 | calamenene | |
2 | 3.11 | camphene | |
12 | 15.33 | camphor | |
4 | 0.39 | delta-3- | carene |
22 | 0.26 | carvone | |
28 | 2.22 | beta- | caryophyllene |
39 | 0.37 | caryophyllene oxide | |
40 | 0.20 | cedrane diol | |
10 | 20.02 | 1,8- | cineole |
26 | 0.43 | alpha- | cubebene |
31 | 1.28 | ar- | curcumene |
8 | 1.81 | para- | cymene |
20 | 0.39 | dihydrocarveol | |
38 | 0.37 | farnesene | |
30 | 0.38 | beta- | gurjunene |
9 | 0.51 | limonene | |
11 | 3.53 | linalool | |
21 | 0.48 | linalyl acetate | |
27 | 0.12 | methyl eugenol | |
33 | 0.20 | alpha- | muurolene |
6 | 0.35 | myrcene | |
16 | 1.17 | nonanol | |
41 | trace | octadecane | |
5 | 0.18 | 1- | octen-3-ol |
13 | 0.80 | pinanone | |
1 | 8.30 | alpha- | pinene |
7 | 0.74 | beta- | pinene |
14 | 0.39 | pinocarvone | |
3 | 0.32 | sabinene | |
29 | 0.41 | alpha- | santalene |
32 | 0.16 | alpha- | selinene |
17 | 1.00 | terpinen-4-ol | |
18 | 1.95 | alpha- | terpineol |
24 | 0.69 | thymol | |
43 | trace | totarol | |
19 | 8.36 | verbenone | |
E. Reverchon and F. Senatore, Isolation of rosemary oil: Comparison between hydrodistillation and supercritical CO2 extraction. Flav. Fragr. J., 7, 227-230 (1992). P&F 17, No. 6, 51, (1992) | |||
rosmarinus officinalis leaf oil france | |||
# | % | Leftshift | Components |
38 | 0.00-trace | beta- | bisabolene |
48 | 0.00-0.27 | alpha- | bisabolol |
35 | 3.24-6.53 | borneol | |
25 | 1.19-14.32 | bornyl acetate | |
39 | 0.00-0.08 | alpha- | cadinene |
40 | 0.00-0.07 | delta- | cadinene |
45 | 0.00-0.12 | T- | cadinol |
4 | 5.86-8.35 | camphene | |
20 | 3.01-7.50 | camphor | |
8 | 0.19-1.19 | delta-3- | carene |
47 | 0.00-0.14 | carvacrol | |
26 | 0.00-2.19 | beta- | caryophyllene |
44 | 0.00-0.10 | caryophyllene oxide | |
12 | 5.30-24.79 | 1,8- | cineole |
16 | 1.39-1.54 | para- | cymene |
7 | 0.07-0.78 | 6,6- | dimethyl(3.1.1)bicyclohept-3-ene-2-butylene |
31 | 0.00-0.19 | beta- | farnesene |
43 | 0.00-trace | geraniol | |
28 | 0.33-0.68 | geranyl acetate | |
36 | 0.00-trace | germacrene D | |
29 | 0.00-0.94 | alpha- | humulene |
32 | 0.00-0.06 | lavandulol | |
30 | trace-0.54 | lavandulyl acetate | |
11 | 3.02-3.96 | limonene | |
22 | 1.46-9.41 | linalool | |
23 | 0.00-5.52 | linalyl acetate | |
37 | 0.00-trace | gamma- | muurolene |
9 | 1.55-2.12 | myrcene | |
41 | 0.00-0.05 | nerol | |
15 | 0.02-0.53 | (E)-beta- | ocimene |
13 | 0.00-0.05 | (Z)-beta- | ocimene |
2 | 19.91-35.08 | alpha- | pinene |
5 | 2.08-4.35 | beta- | pinene |
21 | 0.06-0.58 | iso | pinocamphone |
6 | 0.21-1.36 | sabinene | |
18 | 0.09-0.12 | (E)- | sabinene hydrate |
24 | 0.00-trace | alpha- | santalene |
27 | 0.00-1.21 | terpinen-4-ol | |
10 | 0.39-0.46 | alpha- | terpinene |
14 | 0.28-1.28 | gamma- | terpinene |
34 | 0.00-0.09 | alpha- | terpineol |
17 | 0.51-0.78 | terpinolene | |
3 | 0.00-0.08 | alpha- | thujene |
46 | 0.00-0.18 | thymol | |
1 | 0.24-0.41 | tricyclene | |
42 | 0.00-0.04 | 3,3,6- | trimethyl(2.2.1)bicyclohept-1-en-7-ol |
33 | 1.03-5.08 | verbenone | |
19 | 0.06-0.15 | viridiflorene | |
J. C. Chalchat, R. P. Garry, A. Michet, B. Benjilali and J. L. Chabart, Essential oils of rosemary (Rosmarinus officinalis L.). The chemical composition of the oils of various origins (Morocco, Spain, France). J. Essent. Oil Res., 5, 613-618 (1993). P&F 20, No. 1, 47, (1995) | |||
rosmarinus officinalis leaf oil morocco | |||
# | % | Leftshift | Components |
38 | 0.06-0.13 | beta- | bisabolene |
35 | 3.00-4.51 | borneol | |
25 | 0.12-0.86 | bornyl acetate | |
39 | 0.08-0.98 | alpha- | cadinene |
40 | 0.18-0.77 | delta- | cadinene |
44 | 0.00-0.11 | T- | cadinol |
4 | 3.21-3.98 | camphene | |
20 | 7.42-10.80 | camphor | |
8 | 0.15-0.20 | delta-3- | carene |
26 | 2.41-4.32 | beta- | caryophyllene |
43 | 0.00-0.10 | caryophyllene oxide | |
12 | 43.53-53.48 | 1,8- | cineole |
16 | 0.99-1.40 | para- | cymene |
7 | 0.00-trace | 6,6- | dimethyl(3.1.1)bicyclohept-3-ene-2-butylene |
31 | 0.37-0.51 | beta- | farnesene |
42 | 0.00-0.05 | geraniol | |
28 | 0.00-0.07 | geranyl acetate | |
36 | 0.00-0.13 | germacrene D | |
29 | 0.27-5.43 | alpha- | humulene |
32 | 0.00-0.23 | lavandulol | |
30 | 0.00-0.30 | lavandulyl acetate | |
11 | 1.86-2.06 | limonene | |
22 | 0.73-1.76 | linalool | |
23 | 0.00-0.02 | linalyl acetate | |
37 | 0.00-0.13 | gamma- | muurolene |
9 | 1.27-1.60 | myrcene | |
41 | 0.00-0.10 | nerol | |
15 | 0.00-0.06 | (E)-beta- | ocimene |
13 | 0.00-0.27 | (Z)-beta- | ocimene |
2 | 9.56-12.72 | alpha- | pinene |
5 | 5.53-7.83 | beta- | pinene |
21 | 0.04-0.13 | iso | pinocamphone |
6 | 0.14-0.21 | sabinene | |
18 | 0.04-0.19 | (E)- | sabinene hydrate |
24 | 0.00-0.80 | alpha- | santalene |
27 | 0.69-0.91 | terpinen-4-ol | |
10 | 0.52-0.66 | alpha- | terpinene |
14 | 0.93-1.19 | gamma- | terpinene |
34 | 0.00-2.46 | alpha- | terpineol |
17 | 0.29-0.36 | terpinolene | |
3 | 0.00-trace | alpha- | thujene |
1 | 0.10-0.23 | tricyclene | |
33 | 0.00-0.46 | verbenone | |
19 | 0.00-0.12 | viridiflorene | |
J. C. Chalchat, R. P. Garry, A. Michet, B. Benjilali and J. L. Chabart, Essential oils of rosemary (Rosmarinus officinalis L.). The chemical composition of the oils of various origins (Morocco, Spain, France). J. Essent. Oil Res., 5, 613-618 (1993). P&F 20, No. 1, 47, (1995) | |||
salvia lavandulifolia vahl. leaf oil | |||
In 1983 Cordoba Rodriguez examined the chemical composition of Spanish sage oil produced from more than 30 collections of plants from different areas in Spain. She determined that the oils possessed the following compositional range: | |||
# | % | Leftshift | Components |
42 | 0.0-0.2 | aromadendrene | |
43 | 0.0-0.4 | allo- | aromadendrene |
38 | 0.0-0.8 | (Z)-alpha- | bergamotene |
45 | 0.0-0.2 | beta- | bisabolene |
23 | 1.5-6.4 | borneol | |
24 | 0.2-1.9 | iso | borneol |
33 | 0.8-4.9 | bornyl acetate | |
4 | 4.6-10.6 | camphene | |
19 | 12.9-36.1 | camphor | |
20 | 0.0-0.3 | carvone | |
40 | 0.2-3.7 | beta- | caryophyllene |
39 | 0.0-0.8 | iso | caryophyllene |
46 | 0.0-0.1 | caryophyllene oxide | |
18 | 12.0-40.3 | 1,8- | cineole |
36 | 0.0-0.1 | alpha- | copaene |
35 | 0.0-0.2 | alpha- | cubebene |
44 | 0.1-0.9 | ar- | curcumene |
10 | 0.4-2.1 | para- | cymene |
17 | 0.0-0.4 | alpha-para- | dimethyl styrene |
29 | 0.1-0.7 | geraniol | |
32 | 0.1-0.2 | geranyl acetate | |
37 | 0.0-0.2 | alpha- | gurjunene |
41 | 0.0-1.0 | alpha- | humulene |
11 | 2.4-5.0 | limonene | |
22 | 0.2-11.2 | linalool | |
30 | 0.1-5.8 | linalyl acetate | |
7 | 1.0-4.9 | myrcene | |
28 | 0.0-0.6 | nerol | |
31 | 0.1 | neryl acetate | |
13 | 0.0-0.4 | (E)-beta- | ocimene |
16 | 0.0-0.3 | (Z)-allo- | ocimene |
12 | 0.0-2.2 | (Z)-beta- | ocimene |
8 | 0.0-0.2 | alpha- | phellandrene |
3 | 4.7-10.9 | alpha- | pinene |
6 | 3.3-7.3 | beta- | pinene |
5 | 0.6-2.2 | sabinene | |
21 | 0.1-0.6 | (E)- | sabinene hydrate |
34 | 0.1-6.6 | (Z)- | sabinyl acetate |
25 | 0.2-0.8 | terpinen-4-ol | |
9 | 0.0-0.1 | alpha- | terpinene |
14 | 0.0-0.7 | gamma- | terpinene |
27 | 0.1-1.9 | alpha- | terpineol |
26 | 0.0-0.7 | delta- | terpineol |
15 | 0.0-0.3 | terpinolene | |
2 | 0.2-0.5 | alpha- | thujene |
1 | 0.0-0.5 | tricyclene | |
M. de los Angelos Cordoba Rodriguez, Contribucion al estudio del Aceite Esencial de Salvia Espanola (salvia lavandulaefolia Vahl.). PhD thesis, Univ. Complutense, Madrid, Spain (1983). P&F 23, No. 1, 39, (1998) | |||
salvia officinalis seed oil tunisia | |||
GC Analyses of Salvia Seeds as Valuable Essential Oil Source Mouna Ben Taârit, Kamel Msaada, Karim Hosni, and Brahim Marzouk1 1Laboratoire des Substances Bioactives, Centre de Biotechnologie, Technopôle de Borj-Cédria, BP 901, 2050 Hammam-Lif, Tunisia 2Laboratoire des Substances Naturelles, Institut National de Recherche et d’Analyse Physico-Chimique (INRAP), Sidi Thabet, 2020 Ariana, Tunisia | |||
# | % | Leftshift | Components |
147 | 0.47 | alpha- | amorphene |
146 | 1.43 | allo- | aromadendrene |
162 | 0.18 | aromadendrene | |
175 | 1.29 | bicyclogermacrene | |
174 | 0.72 | beta- | bisabolene |
116 | 3.54 | borneol | |
159 | 0.16 | bornyl acetate | |
151 | 0.08 | gamma- | cadinene |
151 | 0.53 | delta- | cadinene |
218 | 0.15 | T- | cadinol |
0.41 | alpha- | cadinol | |
153 | 13.08 | camphor | |
115 | 0.03 | delta-3- | carene |
129 | 0.83 | carvacrol | |
161 | 0.19 | beta- | caryophyllene |
157 | 0.16 | caryophyllene oxide | |
103 | 6.66 | 1,8- | cineole |
149 | 0.01 | alpha- | copaene |
149 | 0.34 | epi- | cubebol |
118 | 0.17 | para- | cymen-8-ol |
102 | 1.52 | para- | cymene |
138 | 0.06 | beta- | damascenone |
138 | 0.16 | beta- | elemene |
133 | 0.07 | delta- | elemene |
0.47 | beta- | eudesmol | |
135 | 0.83 | eugenol | |
150 | 0.24 | (E,E)-alpha- | farnesene |
114 | 1.01 | geigerene | |
185 | 0.33 | geraniol | |
185 | 0.08 | germacrene B | |
172 | 1.18 | germacrene D | |
878 | 1.29 | hexanol | |
145 | 3.71 | alpha- | humulene |
160 | 0.25 | humulene oxide II | |
155 | 0.68 | linalool | |
107 | 0.13 | (Z)- | linalool oxide |
123 | 0.08 | linalyl acetate | |
2.22 | 13-epi- | manool | |
140 | 0.18 | methyl eugenol | |
119 | 0.28 | myrtanol | |
119 | 0.55 | myrtenal | |
156 | 1.41 | (E)- | nerolidol |
138 | 0.14 | (Z)-allo- | ocimene |
939 | 1.26 | alpha- | pinene |
106 | 0.19 | (Z)- | sabinene hydrate |
121 | 0.18 | (Z)- | sabinol |
157 | 0.08 | spathulenol | |
117 | 0.09 | terpinen-4-ol | |
170 | 0.91 | alpha- | terpineol |
118 | 2.42 | delta- | terpineol |
170 | 1.81 | alpha- | terpinyl acetate |
103 | 3.08 | alpha- | thujene |
110 | 14.77 | alpha- | thujone |
111 | 4.30 | beta- | thujone |
129 | 0.37 | thymol | |
101 | 0.23 | tricyclene | |
110 | 0.48 | undecane | |
159 | 2.66 | viridiflorol | |
149 | 0.04 | alpha- | ylangene |
Overall, it emerges that tricyclene and camphor were biochemical markers of the essential oil of S. verbenaca seeds. Being rich in camphor, seeds could be used as antimicrobial agent. Another point that should be highlighted is that S. officinalis seeds had the same a-thujone chemotype as leaves, whereas these two organs showed some quantitative differences leading to the safe use of seeds essential oil in food industry. From a qualitative standpoint, seeds of S. sclarea seemed to have the same enzymatic trend as flowers characterized by the prevalence of linalool. It is noteworthy to mention that linalool-producing seeds as S. sclarea were suitable for flavouring purposes and constitute potential anti-inflammatory agents. | |||
salvia verbenaca seed oil tunisia | |||
GC Analyses of Salvia Seeds as Valuable Essential Oil Source Mouna Ben Taârit, Kamel Msaada, Karim Hosni, and Brahim Marzouk1 1Laboratoire des Substances Bioactives, Centre de Biotechnologie, Technopôle de Borj-Cédria, BP 901, 2050 Hammam-Lif, Tunisia 2Laboratoire des Substances Naturelles, Institut National de Recherche et d’Analyse Physico-Chimique (INRAP), Sidi Thabet, 2020 Ariana, Tunisia | |||
# | % | Leftshift | Components |
166 | 1.29 | allo- | aromadendrene |
143 | 0.66 | aromadendrene | |
150 | 1.10 | beta- | bisabolene |
128 | 0.79 | bornyl acetate | |
138 | 1.73 | beta- | bourbonene |
114 | 38.94 | camphor | |
101 | 0.50 | delta-3- | carene |
141 | 0.27 | beta- | caryophyllene |
157 | 7.28 | caryophyllene oxide | |
141 | 1.50 | beta- | cubebene |
128 | 0.37 | para- | cymene |
133 | 3.97 | delta- | elemene |
164 | 3.76 | beta- | eudesmol |
144 | 1.76 | (Z)-beta- | farnesene |
108 | 0.26 | alpha- | fenchone |
800 | 0.42 | hexanal | |
168 | 0.67 | alpha- | humulene |
155 | 0.84 | linalool | |
145 | 1.05 | (E)- | linalool oxide |
156 | 2.53 | linalyl acetate | |
5.61 | 13-epi- | manool | |
147 | 0.05 | gamma- | muurolene |
136 | 2.40 | neryl acetate | |
111 | 1.55 | (Z)-allo- | ocimene |
103 | 0.44 | alpha- | pinene |
117 | 0.88 | terpinen-4-ol | |
118 | 2.03 | alpha- | terpineol |
168 | 0.49 | delta- | terpineol |
135 | 4.77 | alpha- | terpinyl acetate |
142 | 0.52 | alpha- | thujone |
927 | 0.96 | tricyclene | |
110 | 2.65 | undecane | |
it emerges that tricyclene and camphor were biochemical markers of the essential oil of S. verbenaca seedsOverall,. Being rich in camphor, seeds could be used as antimicrobial agent. Another point that should be highlighted is that S. officinalis seeds had the same a-thujone chemotype as leaves, whereas these two organs showed some quantitative differences leading to the safe use of seeds essential oil in food industry. From a qualitative standpoint, seeds of S. sclarea seemed to have the same enzymatic trend as flowers characterized by the prevalence of linalool. It is noteworthy to mention that linalool-producing seeds as S. sclarea were suitable for flavouring purposes and constitute potential anti-inflammatory agents. | |||
sandalwood oil east indian | |||
# | % | Leftshift | Components |
15 | 0.10 | (Z)-(E)-alpha- | bergamotal |
3 | 0.12 | (E)-alpha- | bergamotene |
20 | 3.90 | (Z)-(E)-alpha- | bergamotol |
7 | 0.07 | beta- | bisabolene |
16 | 0.26 | alpha- | bisabolol |
13 | 0.64 | beta- | bisabolol |
10 | 0.26 | ar- | curcumene |
8 | 0.13 | beta- | curcumene |
6 | 0.04 | gamma- | curcumene |
18 | 0.38 | dihydro-alpha-santalol | |
25 | 1.70 | (Z)- | lanceol |
12 | 0.06 | (E)- | nerolidol |
26 | 1.10 | (Z)- | nuciferol |
14 | 2.90 | alpha- | santalal |
9 | 0.07 | alpha-eka- | santalal |
17 | 0.56 | beta- | santalal |
11 | 0.01 | beta-eka- | santalal |
2 | 0.82 | alpha- | santalene |
5 | 1.40 | beta- | santalene |
4 | 0.97 | epi-beta- | santalene |
21 | 0.56 | (E)-alpha- | santalol |
24 | 1.50 | (E)-beta- | santalol |
19 | 50.00 | (Z)-alpha- | santalol |
23 | 20.90 | (Z)-beta- | santalol |
22 | 4.10 | epi-beta- | santalol |
1 | 0.01 | santene | |
27 | 1.20 | spirosantalol | |
E. J. Brunke and F. J. Hammerschmidt, Constituents of East Indian Sandalwood Oil—An Eighty Year Long “Stability Test.” Dragoco Rept., (4) 107-113 (1988). P&F 16, No. 6, 49, (1991) | |||
satureja hortensis oil | |||
# | % | Leftshift | Components |
16 | 0.85-0.93 | beta- | bisabolene |
15 | 0.30-0.33 | borneol + alpha-terpineol | |
2 | 0.08-0.12 | camphene | |
12 | 0.10 | camphor | |
19 | 23.88-27.20 | carvacrol | |
14 | 2.36-2.86 | beta- | caryophyllene |
17 | 0.11-0.20 | caryophyllene oxide | |
7 | 0.15-0.19 | 1,8- | cineole |
9 | 3.31-8.60 | para- | cymene |
6 | 0.17-0.22 | limonene | |
13 | 0.27-0.35 | linalool | |
4 | 2.53-3.13 | myrcene | |
10 | 0.28-0.36 | 1- | octen-3-ol |
1 | 2.35-3.83 | alpha- | pinene |
3 | 0.80-1.42 | beta- | pinene |
11 | 0.10-0.42 | (E)- | sabinene hydrate |
5 | 4.45-4.69 | alpha- | terpinene |
8 | 47.23-53.22 | gamma- | terpinene |
18 | 0.12-0.14 | thymol | |
A. Bianchi, A. Albasini, M. Melegari, P. Pecorari, C. Vampa and M. Rinaldi, Indagini su piante del genere Satureja, Atti Soc. Nat. Mat. Moderna, 117, 49-64 (1986). P&F 17, No. 1, 45, (1992) | |||
satureja khuzistanica jamzad oil iran | |||
# | % | Leftshift | Components |
18 | 0.30 | beta- | bisabolene |
7 | 0.80 | delta-3- | carene |
16 | 29.60 | carvacrol | |
17 | 0.20 | beta- | caryophyllene |
9 | 1.80 | 1,8- | cineole |
8 | 39.60 | para- | cymene |
10 | 1.30 | limonene | |
13 | 2.40 | linalool | |
5 | 0.80 | myrcene | |
6 | 0.10 | alpha- | phellandrene |
2 | 0.30 | alpha- | pinene |
4 | 0.40 | beta- | pinene |
3 | 0.10 | sabinene | |
14 | 0.20 | terpinen-4-ol | |
11 | 18.90 | gamma- | terpinene |
12 | trace | terpinolene | |
1 | 0.50 | alpha- | thujene |
15 | trace | thymol | |
J. of Ess. Oil Res. 12, No. 4, 427, (2000) | |||
sugandha kokila berry oil | |||
# | % | Leftshift | Components |
31 | 0.40 | aromadendrene | |
26 | 0.70 | alpha- | bergamolene |
42 | 1.10 | beta- | bisabolene |
45 | 2.90 | delta- | cadinene |
50 | 0.10 | alpha- | calacorene |
47 | 0.30 | calamenene | |
3 | 0.10 | camphene | |
22 | 1.50 | camphor | |
60 | 1.30 | capric acid | |
58 | 0.40 | carvacrol | |
29 | 7.40 | beta- | caryophyllene |
52 | 0.70 | caryophyllene oxide | |
11 | 13.10 | 1,8- | cineole |
20 | 4.70 | alpha- | copaene |
19 | 0.70 | alpha- | cubebene |
49 | 0.10 | para- | cymen-8-ol |
16 | 3.60 | para- | cymene |
27 | 0.30 | beta- | elemene |
59 | 0.20 | elemicin | |
44 | 0.50 | geranial | |
48 | 0.20 | geraniol | |
35 | 1.30 | alpha- | humulene |
62 | 2.70 | lauric acid | |
9 | 0.50 | limonene | |
23 | 2.80 | linalool | |
24 | 0.10 | (E)-para- | menth-2-en-1-ol |
32 | 0.10 | (Z)-para- | menth-2-en-1-ol |
57 | 0.20 | para- | menth-5-en-1,2-ol |
54 | 13.70 | (E)- | methyl cinnamate |
51 | 0.20 | (Z)- | methyl cinnamate |
53 | 0.60 | methyl eugenol | |
56 | 0.40 | (E)- | methyl isoeugenol |
46 | 0.20 | methyl laurate | |
6 | 0.40 | myrcene | |
61 | 2.50 | myristicin | |
37 | 0.30 | neral | |
41 | 0.30 | neryl acetate | |
21 | 0.20 | 2- | nonanol |
18 | 1.90 | 2- | nonanone |
14 | 0.20 | (E)-beta- | ocimene |
12 | 0.05 | (Z)-beta- | ocimene |
7 | 1.50 | alpha- | phellandrene |
10 | 1.40 | beta- | phellandrene |
1 | 1.20 | alpha- | pinene |
4 | 1.90 | beta- | pinene |
5 | 0.80 | sabinene | |
25 | 2.10 | alpha- | santalene |
34 | 0.80 | beta- | santalene |
33 | 0.10 | epi-beta- | santalene |
43 | 0.60 | alpha- | selinene |
40 | 1.00 | beta- | selinene |
55 | 0.50 | spathulenol | |
15 | 0.10 | styrene | |
30 | 4.00 | terpinen-4-ol | |
8 | 0.40 | alpha- | terpinene |
13 | 0.60 | gamma- | terpinene |
38 | 6.60 | alpha- | terpineol |
36 | 0.40 | delta- | terpineol |
17 | 0.30 | terpinolene | |
2 | 0.30 | alpha- | thujene |
39 | 0.01 | 2- | undecanol |
28 | 3.60 | 2- | undecanone |
S. R. Adhikary, B. S. Tuladhar, A. Sheak, T. A. van Beek, M. A. Posthumus and G. P. Lelyveld, investigation of Nepalese essential oils. 1. The oil of Cinnamomum glaucescens (Sugandha kokila). J. Essent. Oil Res. 4, 151-159 (1992). P&F 22, No. 6, 45, (1997) | |||
tagetes minuta flower oil CO2 extract | |||
# | % | Leftshift | Components |
54 | 3.56 | alchenenotriol | |
30 | 9.98 | (E)- | anethole |
27 | 2.10 | para- | anisaldehyde |
41 | 0.33 | aromadendrene | |
47 | 0.08 | beta- | bisabolene |
48 | 0.12 | gamma- | cadinene |
14 | 0.11 | camphor | |
24 | 0.23 | cis- | carveol |
40 | 3.44 | beta- | caryophyllene |
23 | 0.61 | citronellol | |
2 | 1.12 | para- | cymene |
31 | 1.51 | dehydroelshotzia ketone | |
20 | 0.12 | (Z)- | dihydrocarvone |
6 | 5.19 | dihydrotagetone | |
9 | 0.22 | alpha-para- | dimethyl styrene |
33 | 3.00 | delta- | elemene |
50 | 0.11 | gamma- | elemene (furanoid) |
21 | 0.15 | elsholtzia ketone | |
49 | 0.15 | eugenyl acetate | |
37 | 0.28 | geranyl acetate | |
53 | 0.28 | guaiol | |
42 | 2.14 | alpha- | humulene |
51 | 0.29 | ledol | |
3 | 15.14 | limonene | |
11 | 1.03 | linalool | |
8 | 0.43 | (Z)- | linalool oxide furanoid |
28 | 0.47 | linalyl acetate | |
10 | 0.12 | (E)-para- | menth-2-en-1-ol |
29 | 0.39 | methyl citronellate | |
39 | 0.24 | methyl eugenol | |
43 | 0.22 | 6- | methyl-gamma-ionone |
45 | 0.29 | alpha- | muurolene |
1 | 0.24 | myrcene | |
34 | 0.19 | neryl acetate | |
5 | 0.30 | (E)-beta- | ocimene |
4 | 19.33 | (Z)-beta- | ocimene |
36 | 0.10 | beta- | patchoulene |
46 | 0.13 | pentadecane | |
17 | 0.30 | (Z)- | pinanone |
13 | 3.68 | (Z)- | sabinene hydrate |
35 | 0.32 | (E)-iso | safrole |
52 | 2.42 | spathulenol | |
26 | 0.65 | (E)- | tagetenone |
25 | 13.26 | (Z)- | tagetenone |
15 | 2.81 | (E)- | tagetone |
16 | 0.34 | (Z)- | tagetone |
18 | 0.46 | terpinen-4-ol | |
7 | 0.26 | gamma- | terpinene |
19 | 0.50 | alpha- | terpineol |
38 | 0.16 | tetradecane | |
12 | 0.24 | alpha- | thujone |
32 | 0.12 | tridecane | |
44 | 0.57 | valencene | |
22 | 0.05 | verbenone | |
J. Daghero, M. Mattea, E. Reverchon, G. Della Porta and F. Senatore, Isolation of Tagetes minuta L. oil using supercritical CO2 extraction. In: Proceedings WOCMAP-2. Edits., V. Martino, A. Bandoni, G. Bleak and N. Capelle, Acta Hort., 503, 21-25 (1999). P&F 25, No. 6, 32, (2000) | |||
thymus richardii pers. subsp. nitidus (guss.) jalas oil italy | |||
# | % | Leftshift | Components |
27 | 0.70 | allo- | aromadendrene |
30 | 32.30 | beta- | bisabolene |
14 | trace | borneol | |
25 | 0.60 | beta- | bourbonene |
31 | 1.00 | delta- | cadinene |
34 | 4.00 | T- | cadinol |
13 | trace | camphor | |
22 | 13.10 | carvacrol | |
24 | trace | carvacryl acetate | |
18 | 0.50 | trans- | carveol |
20 | 0.70 | carvone | |
26 | 3.40 | beta- | caryophyllene |
33 | 3.10 | caryophyllene oxide | |
8 | 0.75 | 1,8- | cineole |
5 | 2.10 | para- | cymene |
16 | 1.00 | (Z)- | dihydrocarvone |
17 | 5.00 | (E)- | dihydrocarvone |
29 | 1.90 | germacrene D | |
6 | 1.00 | limonene | |
12 | 1.60 | linalool | |
19 | 12.40 | methyl thymol | |
28 | 0.40 | gamma- | muurolene |
4 | trace | myrcene | |
7 | 0.50 | beta- | phellandrene |
32 | 0.70 | beta-sesqui | phellandrene |
1 | 0.70 | alpha- | pinene |
3 | trace | beta- | pinene |
2 | trace | sabinene | |
10 | 1.50 | (Z)- | sabinene hydrate |
15 | 0.60 | terpinen-4-ol | |
9 | trace | gamma- | terpinene |
11 | trace | beta- | thujone |
21 | 1.30 | thymol | |
23 | trace | thymyl acetate | |
J. of Ess. Oil Res. 13, No. 1, 8, (2001) | |||
thymus serpyllum oil canada | |||
# | % | Leftshift | Components |
14 | 3.70 | beta- | bisabolene |
15 | 4.80 | delta- | cadinene |
17 | 5.90 | alpha- | cadinol |
16 | 1.00 | T- | cadinol |
1 | 0.30 | camphene | |
10 | 7.00 | beta- | caryophyllene |
4 | 0.70 | 1,8- | cineole |
6 | 0.70 | para- | cymene |
13 | 3.70 | geranyl acetate | |
3 | 1.80 | limonene | |
8 | 25.20 | linalool | |
9 | 8.30 | linalyl acetate | |
2 | 0.50 | myrcene | |
7 | 2.10 | 1- | octen-3-ol |
5 | 0.50 | gamma- | terpinene |
11 | 2.90 | alpha- | terpineol |
12 | 9.60 | alpha- | terpinyl acetate |
18 | 3.50 | thymol | |
B. M, Lawrence, unpublished information. P&F 23, No. 3, 63, (1998) | |||
thymus serpyllum oil finland | |||
# | % | Leftshift | Components |
20 | 0.50 | allo- | aromadendrene |
23 | 1.90 | beta- | bisabolene |
22 | 0.20 | borneol | |
17 | 3.50 | bornyl acetate | |
16 | 2.70 | beta- | bourbonene + linalool |
3 | 3.70 | camphene | |
15 | 2.50 | camphor | |
19 | 6.90 | beta- | caryophyllene |
27 | 0.10 | caryophyllene oxide | |
9 | 0.30 | 1,8- | cineole + beta-phellandrene |
11 | 1.10 | para- | cymene |
26 | 0.80 | elemol | |
21 | 0.40 | alpha- | humulene |
24 | 1.20 | ledol | |
8 | 0.80 | limonene | |
25 | 0.20 | alpha- | muurolol |
6 | 39.10 | myrcene | |
10 | 9.60 | (Z)-beta- | ocimene |
13 | 0.10 | 3- | octanol |
14 | 0.40 | 1- | octen-3-ol |
2 | 1.90 | alpha- | pinene |
4 | 5.20 | beta- | pinene |
5 | 0.20 | sabinene | |
18 | 0.40 | terpinen-4-ol | |
7 | 0.30 | alpha- | terpinene |
12 | 0.10 | terpinolene | |
1 | 0.10 | tricyclene | |
K.-G. Widen, P. Alanko and M. Uotila, Thymus serpyllum L, x vulgaris L. morphology, chromosome number and chemical composition. Ann. Bot. Fennici, 14, 29-34 (1977). P&F 23, No. 3, 63, (1998) | |||
thymus zygis ssp. zygis herb oil portuguese | |||
Variations in the chemical composition of the essential oils of T. sygis L. ssp. sylvestris (Hoffm. et Link) Brot. ex. Coutinho and T. sygis L. ssp. gracilis (boiss.) R. Morales from southeastern Spain were determined by Saez (1995). In this study, oils from four collections of each subspecies were examined by GC and GC/MS. A summary of the data obtained from these analyses (Table IV) shows that different chemotypes of each of the subspecies can be found. Of these, only the thymol chemotypes of T. zygis ssp. gracilis is typical of the red thyme oil in commerce. Only the chemotype thymol will be shown here: | |||
# | % | Leftshift | Components |
25 | trace | beta- | bisabolene |
23 | 1.0 | borneol | |
18 | trace | bornyl acetate | |
3 | 0.6 | camphene | |
16 | 0.5 | camphor | |
29 | 42.0 | carvacrol | |
19 | 1.5 | beta- | caryophyllene |
30 | 0.6 | caryophyllene oxide | |
9 | 0.2 | 1,8- | cineole |
11 | 19.9 | para- | cymene |
27 | 0.3 | geraniol | |
26 | 0.2 | geranyl acetate | |
24 | trace | germacrene D | |
21 | trace | alpha- | humulene |
8 | 0.4 | limonene | |
17 | 3.8 | linalool | |
6 | 1.3 | myrcene | |
13 | 0.1 | 3- | octanol |
14 | 0.2 | 1- | octen-3-ol |
2 | 0.7 | alpha- | pinene |
4 | 0.1 | beta- | pinene |
5 | trace | sabinene | |
15 | 0.2 | (E)- | sabinene hydrate |
20 | 0.9 | terpinen-4-ol | |
7 | 1.0 | alpha- | terpinene |
10 | 15.0 | gamma- | terpinene |
22 | 0.1 | alpha- | terpineol |
12 | trace | terpinolene | |
1 | 0.8 | alpha- | thujene |
28 | 0.2 | thymol | |
31 | 0.1 | viridiflorol | |
L. R. Salgueiro. A. Proencada Cunha and J. Paiva,Chemotaxonomic characterization of a Thymus hybrid from Portugal. Flav. Fragr. J., 8, 325-330 (1993). P&F 20, No. 3, 67, (1995) | |||
valeriana officinalis rhizome oil | |||
# | % | Leftshift | Components |
36 | 0.2-0.8 | beta- | bisabolene |
58 | 0.5-1.5 | epi-alpha- | bisabolol |
16 | 0.1-0.6 | borneol | |
15 | trace-0.1 | iso | borneol |
25 | 2.3-33.5 | bornyl acetate | |
43 | 0.5-1.2 | bornyl isovalerate | |
46 | 0.1-0.3 | delta- | cadinene |
3 | 0.1-6.4 | camphene | |
14 | trace-0.1 | camphor | |
21 | trace-0.1 | trans- | carveol |
20 | 0.1-0.2 | cis- | carveol |
8 | trace-0.2 | 1,8- | cineole |
31 | trace-0.1 | citronellyl acetate | |
51 | 0.2-2.1 | citronellyl isovalerate | |
33 | trace-0.2 | alpha- | copaene |
57 | 0.4-3.9 | cryptofauronol | |
70 | trace-2.9 | cryptofauronyl acetate | |
22 | trace-0.1 | cuminaldehyde | |
40 | 0.7-2.1 | ar- | curcumene |
7 | 0.1-1.5 | para- | cymene |
34 | 0.2-1.4 | 2,6- | dimethoxy-para-cymene |
62 | 0.1-0.4 | drimenol | |
35 | 0.1-0.4 | beta- | elemene |
30 | 0.2-2.9 | delta- | elemene |
42 | 0.1-0.4 | gamma- | elemene |
75 | trace-0.6 | ethyl palmitate | |
38 | 0.5-7.6 | eudesma-2,6,8-triene | |
53 | 0.6-6.9 | beta- | eudesmol |
29 | trace-0.1 | eugenol | |
61 | 0.1-0.4 | eugenyl isovalerate | |
67 | 0.1-1.1 | iso | eugenyl isovalerate |
48 | 0.4-0.6 | faurinone | |
41 | 0.2-1.4 | germacrene D | |
44 | trace-1.0 | beta- | gurjunene |
37 | 0.1-0.9 | alpha- | humulene |
39 | 0.1-0.7 | beta- | ionone |
45 | 0.2-3.8 | kessane | |
38 | 0.1-3.5 | kessanyl acetate | |
73 | 0.1-0.7 | kessoglycyl monoacetate | |
63 | 0.1-12.6 | alpha- | kessyl acetate |
52 | 0.5-2.1 | ledol | |
10 | 0.1-1.2 | limonene | |
13 | trace | linalool | |
50 | 0.1-1.6 | maaliol | |
24 | 0.1-0.2 | methyl carvacrol | |
71 | 0.1-0.9 | methyl palmitate | |
23 | trace-0.4 | methyl thymol | |
65 | 0.1-0.2 | methyl valerenate | |
6 | trace-0.1 | myrcene | |
19 | 0.1-4.0 | myrtenol | |
28 | trace-9.1 | myrtenyl acetate | |
56 | 0.1-0.2 | myrtenyl hexanoate | |
49 | 1.6-10.5 | myrtenyl isovalerate | |
26 | trace-0.8 | nojigiku acetate | |
47 | 0.5-3.2 | pacifigorgiol | |
72 | 0.1-1.9 | palmitic acid | |
9 | trace-2.4 | beta- | phellandrene |
2 | 0.1-0.2 | alpha- | pinene |
5 | trace-0.9 | beta- | pinene |
4 | trace-0.1 | sabinene | |
17 | 0.1-0.6 | terpinen-4-ol | |
11 | trace-0.2 | gamma- | terpinene |
18 | trace-0.1 | alpha- | terpineol |
12 | trace-0.1 | terpinolene | |
27 | 0.1 | thymol | |
1 | trace-0.1 | tricyclene | |
55 | 0.5-8.2 | valeranone | |
66 | 0.1-1.5 | (E)- | valeren-1-yl acetate |
64 | 0.2-0.8 | (Z)- | valeren-1-yl acetate |
76 | trace-1.6 | (E)- | valeren-1-yl isovalerate |
74 | trace-0.7 | (Z)- | valeren-1-yl isovalerate |
59 | 0.4-12.4 | valerenal | |
69 | 0.3-2.8 | valerenic acid | |
60 | 0.3-1.2 | (Z+E)- | valerenol |
54 | 1.5-14.2 | valerianol | |
32 | 0.1-0.4 | alpha- | ylangene |
R. Bos and H. J. Woerdenbag, Analytical aspects of the essential oil, valerenic acid derivatives and valepotriates in Valeriana officinalis roots and rhizomes. In: Proceedings, International Symposium on breeding research and medicinal and aromatic plants. Edits., F. Pank, p. 355-358, Beiträge zur Zuchtungsforschung, Quedlinburg, Germany (1996). P&F 24, No. 3, 47, (1999) | |||
wulffia stenoglossa dc. flower oil brazil | |||
# | % | Leftshift | Components |
19 | 0.20 | (E)-alpha- | bergamotene |
22 | 5.10 | bicyclogermacrene | |
24 | 2.70 | beta- | bisabolene |
37 | 0.70 | epi-alpha- | bisabolol |
26 | 0.30 | delta- | cadinene |
25 | 0.10 | gamma- | cadinene |
36 | 0.40 | alpha- | cadinol |
17 | 8.80 | beta- | caryophyllene |
32 | 1.00 | caryophyllene oxide | |
14 | 0.10 | alpha- | copaene |
15 | 2.40 | beta- | copaene |
12 | 0.60 | decanal | |
31 | 0.50 | dendrolasin | |
43 | 0.10 | docosane | |
11 | 0.10 | dodecane | |
13 | 0.30 | delta- | elemene |
18 | 0.10 | gamma- | elemene |
41 | 0.10 | ethyl hexadecanoate | |
23 | 3.30 | germacrene A | |
29 | 0.10 | germacrene B | |
21 | 13.00 | germacrene D | |
33 | 0.10 | globulol | |
42 | 0.10 | heneicosane | |
47 | 0.10 | heptacosane | |
46 | 0.10 | hexacosane | |
20 | 2.10 | alpha- | humulene |
34 | 0.10 | humulene oxide II | |
5 | 13.60 | limonene | |
7 | 0.50 | linalool | |
39 | 0.10 | methyl hexadecanoate | |
35 | 0.40 | alpha- | muurolol |
4 | 11.80 | myrcene | |
38 | 0.70 | myristic acid | |
30 | 0.90 | (E)- | nerolidol |
8 | 0.20 | nonanal | |
1 | 0.20 | nonane | |
6 | 17.30 | (E)-beta- | ocimene |
40 | 4.00 | palmitic acid | |
45 | 0.30 | pentacosane | |
27 | 0.10 | beta-sesqui | phellandrene |
2 | 2.10 | alpha- | pinene |
3 | 1.00 | sabinene | |
28 | 0.10 | (Z)-sesqui | sabinene hydrate |
9 | 0.10 | terpinen-4-ol | |
10 | 0.10 | alpha- | terpineol |
16 | 0.10 | tetradecane | |
44 | 0.20 | tricosane | |
J. of Ess. Oil Res. 12, No. 4, 415, (2000) | |||
zingiber officinale oil CO2 extract | |||
# | % | Leftshift | Components |
11 | 3.53 | beta- | bisabolene |
20 | 1.82 | bisabolyl acetate | |
3 | 0.60 | borneol | |
7 | 0.31 | beta- | caryophyllene |
1 | trace | 1,8- | cineole |
9 | 10.87 | ar- | curcumene |
18 | 1.31 | eudesmol | |
6 | 0.83 | eugenol | |
13 | 14.17 | beta- | farnesene |
16 | 0.88 | (E,E)- | farnesol |
15 | trace | (Z,Z)- | farnesol |
22 | 6.02 | gingerol | |
17 | 2.26 | gingerone | |
21 | 0.54 | lanceolyl acetate | |
2 | trace | linalool | |
5 | 0.80 | linalyl acetate | |
19 | 2.21 | nerolidyl acetate | |
8 | 0.64 | neryl acetate | |
12 | 6.81 | beta-sesqui | phellandrene |
14 | trace | beta- | selinene |
23 | 12.22 | 6- | shogaol |
4 | 2.51 | alpha- | terpineol |
10 | 24.70 | zingiberene | |
M. D’Alpaos, P. Traldi, G. Tassinato and P. Pallado, Extraction of essential oils and flavors with classic and supercritical techniques: a comparison. Rivista Ital. EPPOS (Numero Speciale – Agosto), 200-207 (1997). P&F 25, No. 2, 46, (2000) | |||
zingiber officinale oil CO2 extract australia | |||
In 1994, Bartley and Foley analyzed the chemical composition of a supercritical fluid extract of Australian-grown ginger. The freshly harvested roots were peeled and chopped into 2 mm cubes before grinding under liquid nitrogen. The pulp was mixed with coarse granulated Celite (diatomaceous earth) and subjected to extraction by supercritical CO2. The analysis was preformed by a combination of capillary GC (for retention indices and quantitative data) and GC/MS (for component identification confirmation). The compounds identified were: | |||
# | % | Leftshift | Components |
32 | 0.20 | aromadendrenol | |
23 | 10.83 | alpha- | bergamolene |
24 | 2.73 | beta- | bisabolene |
29 | 0.14 | alpha- | bisabolol |
11 | 0.60 | borneol | |
16 | 0.10 | iso | bornyl acetate |
25 | 0.14 | gamma- | cadinene |
4 | 3.71 | camphene | |
9 | 2.99 | 1,8- | cineole |
21 | 3.25 | ar- | curcumene |
12 | 0.11 | decanal | |
28 | 0.22 | dodecatrienol | |
19 | 0.20 | beta- | elemene |
18 | 0.23 | delta- | elemene |
27 | 0.25 | elemol | |
20 | 0.18 | beta- | farnesene |
15 | 25.06 | geranial | |
14 | 0.66 | geraniol | |
17 | 0.12 | geranyl acetate | |
1 | 0.52 | hexanal | |
7 | 0.43 | limonene | |
10 | 0.46 | linalool | |
2 | 0.11 | 3- | methyl hexanol |
6 | 0.53 | myrcene | |
13 | 2.87 | neral | |
35 | 0.08 | 6- | paradol |
34 | 0.20 | pentenyl curcumene | |
8 | 1.63 | beta- | phellandrene |
26 | 8.18 | beta-sesqui | phellandrene |
5 | 0.08 | beta- | pinene |
30 | 0.22 | (Z)-sesqui | sabinene hydrate |
36 | 0.31 | 6- | shogaol |
3 | 0.93 | alpha- | thujene |
31 | 0.15 | zingerenol | |
22 | 25.87 | zingiberene | |
33 | 0.64 | zongerone | |
J. P. Bartley and P. Foley, Supercritical fluid extraction of Australian grown ginger (Zingibar officinale), J. Sci. Food Agric., 66, 365-371 (1994). P&F 22, No. 5, 71, (1997) | |||
zingiber officinale root oil china | |||
# | % | Leftshift | Components |
31 | 13.49 | beta- | bisabolene |
12 | 0.48 | borneol | |
19 | 0.23 | bornyl acetate | |
30 | 4.51 | gamma- | cadinene |
3 | 3.88 | camphene | |
11 | 0.10 | camphor | |
26 | 0.44 | beta- | caryophyllene |
29 | 3.39 | alpha- | cedrene |
8 | 4.00 | 1,8- | cineole |
15 | 0.21 | citronellol | |
22 | 0.29 | citronellyl acetate | |
28 | 26.31 | ar- | curcumene |
7 | 0.13 | para- | cymene |
24 | 0.81 | beta- | elemene |
21 | 0.10 | delta- | elemene |
18 | 2.93 | geranial | |
17 | 0.30 | geraniol | |
23 | 2.92 | geranyl acetate | |
27 | 0.58 | beta- | gurjunene |
9 | 0.10 | heptyl acetate | |
10 | 0.46 | linalool | |
1 | 0.10 | 5- | methyl-2-hexanol |
5 | 0.37 | 6- | methyl-5-hepten-2-one |
6 | 0.12 | myrcene | |
16 | 1.34 | neral | |
32 | 0.92 | nerolidol | |
2 | 1.04 | alpha- | pinene |
4 | 0.14 | beta- | pinene |
13 | 0.10 | terpinen-4-ol | |
14 | 0.37 | alpha- | terpineol |
20 | 0.21 | 2- | undecanone |
25 | 0.28 | zingiberene | |
L-F. Zhu, Y-H. Li, B-L. Li, B-Y. Lu and W-L. Zhang, Aromatic plants and essential constituents (Supplement 1). South China Institute of Botany, Chinese Academy of Sciences, Hai Feng Publ. Co. distributed by Peace Book Co., Ltd., Hong Kong (1995). P&F 25, No. 2, 46, (2000) | |||
zingiber officinale var. gigante root oil brazil | |||
# | % | Leftshift | Components |
22 | 0.50 | aromadendrene | |
25 | 4.70 | beta- | bisabolene |
15 | 0.70 | borneol | |
3 | 5.70 | camphene | |
14 | 0.30 | citronellal | |
17 | 1.00 | citronellol | |
19 | 0.50 | alpha- | copaene |
23 | 7.90 | ar- | curcumene |
8 | 0.20 | para- | cymene |
21 | 0.90 | beta- | elemene |
26 | 7.40 | alpha- | farnesene |
18 | 9.60 | geraniol + geranial | |
20 | 0.50 | geranyl acetate | |
1 | 0.40 | 2- | heptanol |
10 | 1.60 | limonene | |
12 | 0.70 | linalool | |
5 | 0.50 | 6- | methyl-5-hepten-2-one |
6 | 1.30 | myrcene | |
16 | 5.40 | neral | |
13 | 0.30 | 2- | nonanol |
7 | 0.60 | alpha- | phellandrene |
27 | 7.00 | beta-sesqui | phellandrene |
9 | 8.40 | beta- | phellandrene + 1,8-cineole |
2 | 2.30 | alpha- | pinene |
4 | 0.40 | beta- | pinene |
11 | 0.50 | terpinolene | |
24 | 19.00 | zingiberene | |
P&F 25, No. 2, 46, (2000) |